Team:Peking/secondtry/Degradation

From 2014.igem.org

(Difference between revisions)
(Created page with "<!DOCTYPE html PUBLIC "-//W3C//DTD XHTML 1.0 Transitional//EN" "http://www.w3.org/TR/xhtml1/DTD/xhtml1-transitional.dtd"> <!-- saved from url=(0040) https://2014.igem.org/Team...")
Line 1: Line 1:
-
<!DOCTYPE html PUBLIC "-//W3C//DTD XHTML 1.0 Transitional//EN"
+
{{:Team:Peking/secondtry/head}}
-
 
+
-
"http://www.w3.org/TR/xhtml1/DTD/xhtml1-transitional.dtd">
+
-
<!-- saved
+
-
 
+
-
from url=(0040)
+
-
https://2014.igem.org/Team:Peking/example -->
+
-
<html
+
-
 
+
-
xmlns="http://www.w3.org/1999/xhtml" xml:lang="en" lang="en"
+
-
 
+
-
dir="ltr"><head><meta http-equiv="Content-Type" content="text/html;
+
-
 
+
-
charset=UTF-8">
+
-
+
-
<meta
+
-
 
+
-
name="generator" content="MediaWiki 1.16.5">
+
-
<link rel="shortcut icon"
+
-
 
+
-
href="https://2014.igem.org/favicon.ico">
+
-
<link rel="search"
+
-
 
+
-
type="application/opensearchdescription+xml"
+
-
 
+
-
href="https://2014.igem.org/wiki/opensearch_desc.php" title="2014.igem.org
+
-
 
+
-
(en)">
+
-
<link title="Creative Commons" type="application/rdf+xml"
+
-
 
+
-
href="https://2014.igem.org/wiki/index.php?
+
-
 
+
-
title=Team:Peking/example&action=creativecommons" rel="meta">
+
-
<link
+
-
 
+
-
rel="copyright" href="http://creativecommons.org/licenses/by/3.0/">
+
-
<link
+
-
 
+
-
rel="alternate" type="application/atom+xml" title="2014.igem.org Atom
+
-
 
+
-
feed" href="https://2014.igem.org/wiki/index.php?
+
-
 
+
-
title=Special:RecentChanges&feed=atom">
+
-
 
+
-
<title>Team:Peking/example - 2014.igem.org</title>
+
-
+
-
 
+
-
<style type="text/css" media="screen, projection">/*<![CDATA[*/
+
-
+
-
 
+
-
@import "/wiki/skins/common/shared.css?270";
+
-
+
-
 
+
-
@import "/wiki/skins/igem/main.css?270";
+
-
/*]]
+
-
 
+
-
>*/</style>
+
-
<link rel="stylesheet" type="text/css"
+
-
 
+
-
media="print" href="./Team Peking example -
+
-
 
+
-
2014.igem.org_files/commonPrint.css">
+
-
<!--[if lt IE 5.5000]
+
-
 
+
-
><style type="text/css">@import "/wiki/skins/igem/IE50Fixes.css?
+
-
 
+
-
270";</style><![endif]-->
+
-
<!--[if IE 5.5000]><style
+
-
 
+
-
type="text/css">@import "/wiki/skins/igem/IE55Fixes.css?270";</style><!
+
-
 
+
-
[endif]-->
+
-
<!--[if IE 6]><style type="text/css">@import
+
-
 
+
-
"/wiki/skins/igem/IE60Fixes.css?270";</style><![endif]-->
+
-
+
-
 
+
-
<!--[if IE 7]><style type="text/css">@import
+
-
 
+
-
"/wiki/skins/igem/IE70Fixes.css?270";</style><![endif]-->
+
-
+
-
 
+
-
<!--[if lt IE 7]><script type="text/javascript"
+
-
 
+
-
src="/wiki/skins/common/IEFixes.js?270"></script>
+
-
<meta http-
+
-
 
+
-
equiv="imagetoolbar" content="no" /><![endif]-->
+
-
+
-
+
-
 
+
-
<script>
+
-
var skin="igem",
+
-
stylepath="/wiki/skins",
+
-
wgUrlProtocols="http\\:\\/
+
-
 
+
-
\\/|https\\:\\/\\/|ftp\\:\\/\\/|irc\\:\\/\\/|gopher\\:\\/\\/|telnet\\:\\/\\/|nntp\\:
+
-
 
+
-
\\/\\/|worldwind\\:\\/\\/|mailto\\:|news\\:|svn\\:\\/\\/",
+
-
wgArticlePath="/
+
-
 
+
-
$1",
+
-
wgScriptPath="/wiki",
+
-
wgScriptExtension=".php",
+
-
wgScript="/wiki/index.php",
+
-
wgVariantArticlePath=false,
+
-
wgActionPaths={},
+
-
wgServer="https://2014.igem.org",
+
-
wgCanonicalNamespace="",
+
-
wgCanonicalSpecialPageName=false,
+
-
wgNamespaceNumber=0,
+
-
wgPageName="Team:Peking/example",
+
-
wgTitle="Team:Peking/example",
+
-
wgAction="view",
+
-
wgArticleId=28726,
+
-
wgIsArticle=true,
+
-
wgUserName=null,
+
-
wgUserGroups=null,
+
-
wgUserLanguage="en",
+
-
wgContentLanguage="en",
+
-
wgBreakFrames=false,
+
-
wgCurRevisionId=223016,
+
-
wgVersion="1.16.5",
+
-
wgEnableAPI=true,
+
-
wgEnableWriteAPI=true,
+
-
wgSeparatorTransformTable=
+
-
 
+
-
["", ""],
+
-
wgDigitTransformTable=["", ""],
+
-
wgMainPageTitle="Main Page",
+
-
wgFormattedNamespaces={"-2": "Media", "-1": "Special", "0": "", "1": "Talk",
+
-
 
+
-
"2": "User", "3": "User talk", "4": "2014.igem.org", "5": "2014.igem.org talk",
+
-
 
+
-
"6": "File", "7": "File talk", "8": "MediaWiki", "9": "MediaWiki talk", "10":
+
-
 
+
-
"Template", "11": "Template talk", "12": "Help", "13": "Help talk", "14":
+
-
 
+
-
"Category", "15": "Category talk"},
+
-
wgNamespaceIds={"media": -2, "special":
+
-
 
+
-
-1, "": 0, "talk": 1, "user": 2, "user_talk": 3, "2014.igem.org": 4,
+
-
 
+
-
"2014.igem.org_talk": 5, "file": 6, "file_talk": 7, "mediawiki": 8,
+
-
 
+
-
"mediawiki_talk": 9, "template": 10, "template_talk": 11, "help": 12,
+
-
 
+
-
"help_talk": 13, "category": 14, "category_talk": 15, "image": 6, "image_talk":
+
-
 
+
-
7},
+
-
wgSiteName="2014.igem.org",
+
-
wgCategories=[],
+
-
wgMWSuggestTemplate="https://2014.igem.org/wiki/api.php?
+
-
 
+
-
action=opensearch\x26search={searchTerms}\x26namespace=
+
-
 
+
-
{namespaces}\x26suggest",
+
-
wgDBname="2014_igem_org",
+
-
wgSearchNamespaces=[0],
+
-
wgMWSuggestMessages=["with suggestions",
+
-
 
+
-
"no suggestions"],
+
-
wgRestrictionEdit=[],
+
-
wgRestrictionMove=[];
+
-
</script>         
+
-
 
+
-
     
+
-
<script type="text/javascript" src="./Team Peking
+
-
 
+
-
example - 2014.igem.org_files/wikibits.js"><!-- wikibits js --></script>
+
-
+
-
 
+
-
<!-- Head Scripts -->
+
-
<script src="./Team Peking example -
+
-
 
+
-
2014.igem.org_files/ajax.js"></script>
+
-
<script src="./Team Peking example -
+
-
 
+
-
2014.igem.org_files/mwsuggest.js"></script>
+
-
<script
+
-
 
+
-
type="text/javascript" src="./Team Peking example -
+
-
 
+
-
2014.igem.org_files/index.php"><!-- site js --></script>
+
-
<!-- jQuery
+
-
 
+
-
Javascript -->
+
-
<script type="text/javascript" src="./Team Peking
+
-
 
+
-
example - 2014.igem.org_files/jquery-latest.min.js"></script>
+
-
<script
+
-
 
+
-
type="text/javascript" src="./Team Peking example -
+
-
 
+
-
2014.igem.org_files/jquery.tablesorter.min.js"></script>
+
-
        <link
+
-
 
+
-
rel="stylesheet" type="text/css" href="./Team Peking example -
+
-
 
+
-
2014.igem.org_files/style.css">
+
-
        <link rel="stylesheet" type="text/css"
+
-
 
+
-
href="./Team Peking example - 2014.igem.org_files/table_styles.css">
+
-
       
+
-
 
+
-
<link rel="stylesheet" type="text/css" href="./Team Peking example -
+
-
 
+
-
2014.igem.org_files/forum_styles.css">
+
-
<script type="text/javascript"
+
-
 
+
-
src="./Team Peking example -
+
-
 
+
-
2014.igem.org_files/forum_scripts.js"></script>
+
-
</head>
+
-
 
+
-
<body
+
-
 
+
-
class="mediawiki  ltr ns-0 ns-subject page-Team_Peking_example">
+
-
  <div
+
-
 
+
-
id="globalWrapper">
+
-
 
+
-
    <div id="top-section">
+
-
<div id="p-logo">
+
-
   
+
-
 
+
-
<a href="https://2014.igem.org/Main_Page" title="Main Page">
+
-
   
+
-
 
+
-
<img src="./Team Peking example - 2014.igem.org_files/wiki.png">"
+
-
   
+
-
 
+
-
</a>
+
-
</div>  <!-- end p-logo -->
+
-
<script type="text/javascript"> if
+
-
 
+
-
(window.isMSIE55) fixalpha(); </script>
+
-
 
+
-
 
+
-
 
+
-
<div id="menubar" class="left-
+
-
 
+
-
menu noprint">
+
-
  <ul>
+
-
                  <li class="selected"><a
+
-
 
+
-
href="./Team Peking example - 2014.igem.org_files/Team Peking example -
+
-
 
+
-
2014.igem.org.htm">Page              </a></li>
+
-
              <li class="new"><a
+
-
 
+
-
href="https://2014.igem.org/wiki/index.php?
+
-
 
+
-
title=Talk:Team:Peking/example&action=edit&redlink=1">Discussion         
+
-
 
+
-
    </a></li>
+
-
              <li><a href="https://2014.igem.org/wiki/index.php?
+
-
 
+
-
title=Team:Peking/example&action=edit">View source              </a></li>
+
-
 
+
-
 
+
-
            <li><a href="https://2014.igem.org/wiki/index.php?
+
-
 
+
-
title=Team:Peking/example&action=history">History              </a></li>
+
-
     
+
-
 
+
-
        <li style="color:white;cursor:default">teams</li>
+
-
  </ul>
+
-
+
-
 
+
-
</div> <!-- end menubar (left) -->
+
-
 
+
-
<div class="right-menu noprint"
+
-
 
+
-
id="menubar">
+
-
    <ul>
+
-
                <li
+
-
 
+
-
id="pt-login"><a href="https://2014.igem.org/wiki/index.php?
+
-
 
+
-
title=Special:UserLogin&returnto=Team:Peking/example" title="You are
+
-
 
+
-
encouraged to log in; however, it is not mandatory [o]" accesskey="o">Log
+
-
 
+
-
in</a></li>     </ul>
+
-
</div><!-- end right menubar -->
+
-
 
+
-
+
-
 
+
-
<div id="search-controls" class="noprint">
+
-
<form
+
-
 
+
-
action="https://2014.igem.org/Special:Search" id="searchform">
+
-
+
-
 
+
-
<input id="searchInput" name="search" type="text" title="Search
+
-
 
+
-
2014.igem.org [alt-f]" accesskey="f" value="" autocomplete="off">
+
-
+
-
 
+
-
<input type="submit" name="go" class="searchButton"
+
-
 
+
-
id="searchGoButton" value="Go" title="Go to a page with this exact name
+
-
 
+
-
if exists">&nbsp;
+
-
      <input type="submit" name="fulltext"
+
-
 
+
-
class="searchButton" id="mw-searchButton" value="Search" title="Search
+
-
 
+
-
the pages for this text">
+
-
</form>
+
-
</div> <!-- close
+
-
 
+
-
search controls -->
+
-
    </div> <!-- close top-section-->
+
-
    <div
+
-
 
+
-
id="content">
+
-
<a name="top" id="top"></a>
+
-
+
-
 
+
-
<h1 class="firstHeading">Team:Peking/example</h1>
+
-
+
-
 
+
-
<div id="bodyContent">
+
-
<h3
+
-
 
+
-
id="siteSub" class="noprint">From 2014.igem.org</h3>
+
-
+
-
 
+
-
<div id="contentSub"></div>
+
-
+
-
 
+
-
<!--
+
-
<div id="jump-to-nav">Jump to:                 
+
-
 
+
-
    <a href="#column-one">navigation</a>, <a
+
-
 
+
-
href="#searchInput">search</a></div>-->
+
-
+
-
 
+
-
<!-- start content -->
+
-
<p>
+
-
 
+
-
<meta
+
-
 
+
-
charset="utf-8">
+
-
 
+
-
<link rel="stylesheet" type="text/css" href="./Team Peking
+
-
 
+
-
example - 2014.igem.org_files/hide.css">
+
-
<link rel="stylesheet"
+
-
 
+
-
type="text/css" href="./Team Peking example -
+
-
 
+
-
2014.igem.org_files/forhead.css">
+
-
<script type="text/javascript" src="./Team
+
-
 
+
-
Peking example - 2014.igem.org_files/jQuery.js"></script>
+
-
 
+
-
 
+
-
 
+
-
 
+
-
 
+
-
</p><div
+
-
 
+
-
id="mainbody">
+
-
<div id="top1">
+
-
  <nav id="topnav">
+
-
      <ul>
+
-
      <li
+
-
 
+
-
id="logo"> <img src="./Team Peking example -
+
-
 
+
-
2014.igem.org_files/Peking_igemlogo.png" width="80" height="65"
+
-
 
+
-
alt=""></li>
+
-
      <li id="home"> <a class="a1a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry">Home</a></li>
+
-
       
+
-
 
+
-
<li id="Team"> <a class="a1a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/example#">Team</a>
+
-
<div
+
-
 
+
-
id="con">      <ul class="sublist">
+
-
            <li id="Teamsublist"> <a
+
-
 
+
-
class="a2a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry/Members">Members</
+
-
 
+
-
a></li><li id="Teamsublist"> <a class="a2a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry/Notebook">Notebook
+
-
 
+
-
</a></li> <li id="Teamsublist"> <a class="a2a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry/Attributions">Attributio
+
-
 
+
-
ns</a></li>    </ul>
+
-
</div>      </li>
+
-
        <li id="Project"> <a
+
-
 
+
-
class="a1a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/example#">Project</a>
+
-
<div
+
-
 
+
-
id="con">        <ul class="sublist">
+
-
            <li id="Teamsublist"> <a
+
-
 
+
-
class="a2a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry/Killing">Killing</a></li
+
-
 
+
-
><li id="Teamsublist"> <a class="a2a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry/KillingImprovements">
+
-
 
+
-
Killing Improvements </a></li> <li
+
-
 
+
-
id="Teamsublist">  <a class="a2a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry/Degradation">Degrada
+
-
 
+
-
tion</a></li>      <li id="Teamsublist"> <a class="a2a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry/Suicide">Suicide</a><
+
-
 
+
-
/li>      </ul>
+
-
</div>        </li>
+
-
        <li id="Modeling"
+
-
 
+
-
style="width:14%"> <a class="a1a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/example#">Modeling</a>
+
-
<div
+
-
 
+
-
id="con">          <ul class="sublist">
+
-
        <li id="Teamsublist"> <a
+
-
 
+
-
class="a2a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry/BindingEvaluation">Bin
+
-
 
+
-
ding Evaluation </a></li>
+
-
        <li id="Teamsublist"> <a class="a2a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry/CellularBurden">Cellula
+
-
 
+
-
r Burden </a></li>
+
-
        <li id="Teamsublist"> <a class="a2a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry/ProjectApplication">Pro
+
-
 
+
-
ject Application</a></li>        </ul>
+
-
</div>        </li>
+
-
        <li
+
-
 
+
-
id="Achievements" style="width:16%"> <a class="a1a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/example#">Achievements</a>
+
-
+
-
 
+
-
<div id="con">        <ul class="sublist">
+
-
            <li
+
-
 
+
-
id="Teamsublist"> <a class="a2a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry/Parts">Parts</a></li>
+
-
 
+
-
 
+
-
        <li id="Teamsublist"> <a class="a2a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry/JudgingCriteria">Judgin
+
-
 
+
-
g Criteria </a></li>    </ul>
+
-
</div>        </li>
+
-
        <li id="Safety "> <a
+
-
 
+
-
class="a1a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry/Safety">Safety</a></li
+
-
 
+
-
>
+
-
        <li id="Human" style="width:18%"> <a class="a1a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/example#">Human Practice</a>
+
-
 
+
-
 
+
-
<div id="con">        <ul class="sublist">
+
-
            <li id="Teamsublist"> <a
+
-
 
+
-
class="a2a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry/TeamCom">Team
+
-
 
+
-
Communication</a></li>
+
-
            <li id="Teamsublist"> <a class="a2a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry/FieldInvestigations">Fie
+
-
 
+
-
ld Investigations</a></li>
+
-
            <li id="Teamsublist"> <a class="a2a"
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/secondtry/iGEMClub">iGEM
+
-
 
+
-
Club</a></li>    </ul>
+
-
</div>      </li>
+
-
    </ul>
+
-
  </nav>
+
-
</div>
+
-
 
+
-
 
+
-
<p></p><p>
+
 +
<html>
 +
<head>
<meta charset="utf-8">
<meta charset="utf-8">
-
<link rel="stylesheet" type="text/css"  
+
<link rel="stylesheet" type="text/css" href="https://2014.igem.org/Team:Peking/css/inside.css?action=raw&ctype=text/css" />
-
 
+
<script type="text/javascript" src="https://2014.igem.org/Team:Peking/js/inside.js?action=raw&ctype=text/javascript"></script>
-
href="./Team Peking example - 2014.igem.org_files/inside.css">
+
<script type="text/javascript" src="https://2014.igem.org/Team:Peking/js/jquery.pin.js?action=raw&ctype=text/javascript"></script>
-
<script  
+
-
 
+
-
type="text/javascript" src="./Team Peking example -
+
-
 
+
-
2014.igem.org_files/inside.js"></script>
+
-
<script type="text/javascript"  
+
-
 
+
-
src="./Team Peking example - 2014.igem.org_files/jquery.pin.js"></script>
+
      
      
 +
</head>
-
 
+
<div id="titlepic">
-
</p><div id="titlepic">
+
<!-- InstanceBeginEditable name="wcgtitlepic" -->
-
<!-- InstanceBeginEditable name="wcgtitlepic" --
+
<img src="https://static.igem.org/mediawiki/2014/b/b2/Peking2014wcg_members.png" alt=""/>
-
 
+
<!-- InstanceEndEditable -->
-
>
+
-
<img src="./Team Peking example -
+
-
 
+
-
2014.igem.org_files/Peking2014wcg_members.png" alt="">
+
-
<!--  
+
-
 
+
-
InstanceEndEditable -->
+
</div>
</div>
<div id="insidemid">
<div id="insidemid">
      
      
-
     <aside  
+
     <aside id="sidenav">
-
 
+
-
id="sidenav" style="height: 2684px;">
+
     <div id="clc"></div>
     <div id="clc"></div>
-
         <div  
+
         <div id="list">
 +
        <ul id= "fnav"><br>
 +
<!-- InstanceBeginEditable name="wcginside1" -->
-
class="pin-wrapper" style="height: 129px;"><div id="list" style="width:
 
-
235px;">
 
-
        <ul id="fnav"><br>
 
-
<!-- InstanceBeginEditable
 
-
name="wcginside1" -->
+
<!--*******************导航栏*******************导航栏*******************导航栏*******************导航栏*******************导航栏**********************-->
 +
<li><a href="https://2014.igem.org/Team:Peking/firsttry/project/degradation#decontamination01">Introduction</a></li>
 +
<li><a href="https://2014.igem.org/Team:Peking/firsttry/project/degradation#decontamination02">Design</a></li>
 +
<li><a href="https://2014.igem.org/Team:Peking/firsttry/project/degradation#decontamination03">Results</a></li>
-
 
+
<!--*******************导航栏结束*******************导航栏结束*******************导航栏结束*******************导航栏结束**********************-->
-
 
+
-
<!--*******************导航栏*******************导航栏
+
-
 
+
-
*******************导航栏*******************导航栏*******************导航栏
+
-
 
+
-
**********************-->
+
-
<li><a
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/firsttry/project/degradation#deco
+
-
 
+
-
ntamination01">Introduction</a></li>
+
-
        <li><a
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/firsttry/project/degradation#deco
+
-
 
+
-
ntamination02">Design</a></li>
+
-
        <li><a
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/firsttry/project/degradation#deco
+
-
 
+
-
ntamination03">Results</a></li>
+
-
 
+
-
<!--*******************导航栏结束*******************导航栏结束
+
-
 
+
-
*******************导航栏结束*******************导航栏结束
+
-
 
+
-
**********************-->
+
<!-- InstanceEndEditable -->
<!-- InstanceEndEditable -->
         <br></ul>
         <br></ul>
-
          
+
         </div>
-
 
+
-
</div></div>
+
     <div id="clc"></div>
     <div id="clc"></div>
     </aside>
     </aside>
        
        
-
     <div  
+
     <div id="midbody">
-
 
+
-
id="midbody">
+
     <div id="clc"></div>
     <div id="clc"></div>
-
<!-- InstanceBeginEditable  
+
<!-- InstanceBeginEditable name="wcginside2" -->
 +
<!--*******************正文*******************正文*******************正文*******************正文*******************正文*******************正文*******************正文*******************正文*******************正文*******************-->
 +
 
-
name="wcginside2" -->
+
<h2 id="decontamination01">Introduction</h2>  
-
<!--*******************正文*******************正文
+
<p>Apart from lack of sunlight in the water and anoxia caused by cyanobacteria itself, the potential detrimental effect of alga secreted toxin should be noticed. One of the
-
*******************正文*******************正文*******************正文
+
most harmful toxin is called microcystin(MC), which has severe hepatotoxicity. The work in decontamination part is to degrade MCs in water environment during an algal  
-
 
+
-
*******************正文*******************正文*******************正文
+
-
 
+
-
*******************正文*******************-->
+
-
 
+
-
<h2
+
-
 
+
-
id="decontamination01">Introduction</h2>
+
-
<p>Apart from lack of
+
-
 
+
-
sunlight in the water and anoxia caused by cyanobacteria itself, the
+
-
 
+
-
potential detrimental effect of alga secreted toxin should be noticed. One of
+
-
 
+
-
the
+
-
 
+
-
most harmful toxin is called microcystin(MC), which has severe  
+
-
 
+
-
hepatotoxicity. The work in decontamination part is to degrade MCs in  
+
-
 
+
-
water environment during an algal  
+
bloom. </p>
bloom. </p>
-
<p>To accomplish this  
+
<p>To accomplish this work, the potent microcystin-degrading enzyme-MlrA, originally from Sphingomonas is utilized. This enzyme can cleavage the ring structure in  
-
 
+
-
work, the potent microcystin-degrading enzyme-MlrA, originally from  
+
-
 
+
-
Sphingomonas is utilized. This enzyme can cleavage the ring structure in  
+
-
 
+
-
microcystin, significantly reducing the toxicity of the protein. Since MCs is
+
-
 
+
-
released into water by algae, secretion for MlrA is also necessary to facilitate
+
-
the degradation of  
+
microcystin, significantly reducing the toxicity of the protein. Since MCs is released into water by algae, secretion for MlrA is also necessary to facilitate the degradation of  
MCs.</p>
MCs.</p>
-
<p>Based on utility of MlrA, we measure the  
+
<p>Based on utility of MlrA, we measure the degradation efficiency of the living bacteria, the periplasmic protein and the lysed whole cell production. The results indicate
-
degradation efficiency of the living bacteria, the periplasmic protein and the
+
that our engineered bacteria could degrade MC-LR to a certain extent.</p>
 +
<h2 id="decontamination02">Design</h2>
 +
<p>MCs are widespread toxic cyclic heptapeptides produced by many species of algae with different variants(Fig. 1). MCs are synthesized by polyketide synthases (PKS) and  
-
lysed whole cell production. The results indicate
+
non-ribosomal peptide synthetases (NRPS) pathway. Among different variants, MC-LR is a widespread and deleterious one.</p>
-
that our engineered
+
<figure><img src="./Team Peking firsttry project degradation - 2014.igem.org_files/Peking2014jyj_1.png"><figcaption>Fig. 1 Structure of MCs. MCs share cyclic structure of cyclo-(-D-Ala-L-X-
-
bacteria could degrade MC-LR to a certain extent.</p>
+
MeAsp-L-Z-Adda-D-Glu-Mdha), where X and Z are variable.[1]</figcaption></figure>
-
<h2
+
-
id="decontamination02">Design</h2>
+
<p>The most known mechanism of its toxicity is that MCs can inhibit protein phosphatase 1(PP1) and 2A (PP2A) specifically and efficiently.[2] The inhibition can lead to a
-
<p>MCs are widespread toxic cyclic
+
-
heptapeptides produced by many species of algae with different variants
+
severe disorder of biochemical reaction and disorganization of cytoskeleton in many eukaryotic cell.</p>
-
 
+
<p>Many routine tools of decontamination cannot significantly reduce activities of MCs. Here, we propose a new idea of biodegradation, which could degrade MCs  
-
(Fig. 1). MCs are synthesized by polyketide synthases (PKS) and
+
-
 
+
-
non-
+
-
 
+
-
ribosomal peptide synthetases (NRPS) pathway. Among different variants,
+
-
 
+
-
MC-LR is a widespread and deleterious one.</p>
+
-
 
+
-
<figure><img src="./Team
+
-
 
+
-
Peking firsttry project degradation -
+
-
 
+
-
2014.igem.org_files/Peking2014jyj_1.png"><figcaption>Fig. 1 Structure of
+
-
 
+
-
MCs. MCs share cyclic structure of cyclo-(-D-Ala-L-X-
+
-
 
+
-
MeAsp-L-Z-Adda-D-
+
-
 
+
-
Glu-Mdha), where X and Z are variable.[1]</figcaption></figure>
+
-
 
+
-
<p>The
+
-
 
+
-
most known mechanism of its toxicity is that MCs can inhibit protein
+
-
 
+
-
phosphatase 1(PP1) and 2A (PP2A) specifically and efficiently.[2] The
+
-
 
+
-
inhibition can lead to a
+
-
 
+
-
severe disorder of biochemical reaction and  
+
-
 
+
-
disorganization of cytoskeleton in many eukaryotic cell.</p>
+
-
<p>Many  
+
-
 
+
-
routine tools of decontamination cannot significantly reduce activities of  
+
-
 
+
-
MCs. Here, we propose a new idea of biodegradation, which could degrade  
+
-
 
+
-
MCs  
+
effectively without apparent side effects.</p>
effectively without apparent side effects.</p>
-
<p>Many bacterial  
+
<p>Many bacterial species have been reported to have ability to degrade MCs. Among them, a gene cluster in Sphingomonas has been found and sequenced. The cluster
-
species have been reported to have ability to degrade MCs. Among them, a
+
includes four genes, mlrA, mlrB, mlrC and mlrD, which can hydrolysze MCs and facilitate absorption of the products as carbon source. During the degradation process, the
-
gene cluster in Sphingomonas has been found and sequenced. The cluster
+
first-step linearized product, which is catalyzed by MlrA, shows much weaker hepatoxin compared with MCs. In the experiment of mouse bioassay, up to 250 mg/kg of
-
includes four genes, mlrA, mlrB, mlrC and mlrD, which can hydrolysze MCs
+
linearized MC-LR shows no toxicity to mouse, much higher than 50% lethal dose 50mg/kg of cyclic MC-LR. Furthermore, the linearization also raise the median inhibition
-
and facilitate absorption of the products as carbon source. During the
+
concentration to 95nM, around 160 times higher than original 0.6nM. [3] (Fig. 2)</p>
-
degradation process, the
+
<figure><img src="./Team Peking firsttry project degradation - 2014.igem.org_files/Peking2014jyj_2.png"><figcaption>Fig. 2 First step of biodegradation of MC-LR. MlrA mediates breaking
-
first-step linearized product, which is catalyzed by
+
peptide bond between Adda and Arg, which leads to significant decrease of toxicity.[3]</figcaption></figure>
-
MlrA, shows much weaker hepatoxin compared with MCs. In the
 
-
experiment of mouse bioassay, up to 250 mg/kg of  
+
<p>In order to enhance the degradation effect, location of MlrA should be considered. There are some porins proteins on the outer membrane of E. coli, which allow small
-
linearized MC-LR shows
+
molecules, including MCs, to penetrate the membrane. Consequently, it is sufficient to secret MlrA into periplasm for decontamination. </p>
 +
<h2 id="decontamination03">Result</h2>
 +
<p>We construct a vector for secretion using Sec pathway(Fig. 3), which belongs to Type II secretion system that exports proteins to periplasm. During the exporting process,
-
no toxicity to mouse, much higher than 50% lethal dose 50mg/kg of cyclic
+
target protein is translocated across inner membrane in unfolded conformation and is refolded in the periplasm.[4]</p>
 +
<p>A signal peptide called Pectate lyase B (PelB) in Sec pathway is required for the transportation system to recognize the protein to be export and the signal peptide can be
-
MC-LR. Furthermore, the linearization also raise the median inhibition
+
cut off in the periplasm. Since the PelB signal peptide holds little limitation to the following protein’s molecular weight, we finally decide to use PelB to secrete the MlrA  
-
 
+
-
concentration to 95nM, around 160 times higher than original 0.6nM. [3]
+
-
 
+
-
(Fig. 2)</p>
+
-
 
+
-
<figure><img src="./Team Peking firsttry project degradation -
+
-
 
+
-
2014.igem.org_files/Peking2014jyj_2.png"><figcaption>Fig. 2 First step of
+
-
 
+
-
biodegradation of MC-LR. MlrA mediates breaking
+
-
 
+
-
peptide bond between
+
-
 
+
-
Adda and Arg, which leads to significant decrease of toxicity.[3]
+
-
 
+
-
</figcaption></figure>
+
-
 
+
-
 
+
-
<p>In order to enhance the degradation effect,
+
-
 
+
-
location of MlrA should be considered. There are some porins proteins on
+
-
 
+
-
the outer membrane of E. coli, which allow small
+
-
 
+
-
molecules, including MCs,
+
-
 
+
-
to penetrate the membrane. Consequently, it is sufficient to secret MlrA into
+
-
 
+
-
periplasm for decontamination. </p>
+
-
<h2
+
-
 
+
-
id="decontamination03">Result</h2>
+
-
<p>We construct a vector for
+
-
 
+
-
secretion using Sec pathway(Fig. 3), which belongs to Type II secretion
+
-
 
+
-
system that exports proteins to periplasm. During the exporting process,
+
-
 
+
-
target protein is translocated across inner membrane in unfolded
+
-
 
+
-
conformation and is refolded in the periplasm.[4]</p>
+
-
<p>A signal peptide
+
-
 
+
-
called Pectate lyase B (PelB) in Sec pathway is required for the
+
-
 
+
-
transportation system to recognize the protein to be export and the signal
+
-
 
+
-
peptide can be
+
-
 
+
-
cut off in the periplasm. Since the PelB signal peptide holds  
+
-
 
+
-
little limitation to the following protein’s molecular weight, we finally  
+
-
 
+
-
decide to use PelB to secrete the MlrA  
+
protein. </p>
protein. </p>
-
<figure><img  
+
<figure><img src="./Team Peking firsttry project degradation - 2014.igem.org_files/Peking2014jyj_3.png"><figcaption>Fig. 3 Secretion vector of mlrA. The fusion protein includes Type II  
-
 
+
-
src="./Team Peking firsttry project degradation -  
+
-
 
+
-
2014.igem.org_files/Peking2014jyj_3.png"><figcaption>Fig. 3 Secretion  
+
-
 
+
-
vector of mlrA. The fusion protein includes Type II  
+
-
 
+
-
secretion peptide pelB
+
-
 
+
-
and mlrA. The construction as a whole is expressed in pET-21a(+)
+
-
 
+
-
plasmid.</figcaption></figure>
+
-
 
+
-
 
+
-
<p>The concentration of MCs can be
+
-
 
+
-
tested in PP1 inhibition assays. As mentioned, MCs can inhibit the activity of
+
-
PP1 effectively. Thus we constructed a standard curve
+
secretion peptide pelB and mlrA. The construction as a whole is expressed in pET-21a(+) plasmid.</figcaption></figure>
-
reflecting the relation
 
-
between the concentration of MC and the relative activity of PP1. Therefore,
+
<p>The concentration of MCs can be tested in PP1 inhibition assays. As mentioned, MCs can inhibit the activity of PP1 effectively. Thus we constructed a standard curve
-
the concentration of MCs in any solution could be quantified by measuring  
+
reflecting the relation between the concentration of MC and the relative activity of PP1. Therefore, the concentration of MCs in any solution could be quantified by measuring  
corresponding PP1 relative activity.</p>
corresponding PP1 relative activity.</p>
-
<p>p-Nitrophenyl phosphate  
+
<p>p-Nitrophenyl phosphate (pNPP) is a widely used non-specific substrate to test protein phosphatase activity and it can be hydrolyzed to p-Nitrophenyl(pNP) with
-
(pNPP) is a widely used non-specific substrate to test protein phosphatase
+
characteristic absorption at 405nm. The measurement of PP1 activity is based on the accumulation of pNP. Considering the microcystin(MC) is the inhibitor of PP1 and MlrA
-
activity and it can be hydrolyzed to p-Nitrophenyl(pNP) with
+
can disrupt MC’s structure to disrupt its inhibitory effect, the MlrA activity can be detected by quantification of absorption at 405nm. (Fig. 4)</p>
-
characteristic
 
-
absorption at 405nm. The measurement of PP1 activity is based on the  
+
<figure><img src="./Team Peking firsttry project degradation - 2014.igem.org_files/Peking2014jyj_4.png"><figcaption>Fig. 4 Measurement of MlrA activity. The OD405 indicates the  
-
accumulation of pNP. Considering the microcystin(MC) is the inhibitor of
+
concentration of pNP, and the change of pNP level could reflect the PP1 activity(a). MC can strongly inhibit the PP1 activity(b), and the MlrA can cleave the MC and dampen
-
PP1 and MlrA
+
its toxicity(c).</figcaption></figure>
-
can disrupt MC’s structure to disrupt its inhibitory effect, the
 
-
MlrA activity can be detected by quantification of absorption at 405nm. (Fig.
 
-
4)</p>
+
<p>So the concentration of MCs after degradation can be finally measured by absorption spectrophotometry method with all the calibration curves for all the interactions  
-
 
+
-
 
+
-
<figure><img src="./Team Peking firsttry project degradation -
+
-
 
+
-
2014.igem.org_files/Peking2014jyj_4.png"><figcaption>Fig. 4 Measurement
+
-
 
+
-
of MlrA activity. The OD405 indicates the
+
-
 
+
-
concentration of pNP, and the
+
-
 
+
-
change of pNP level could reflect the PP1 activity(a). MC can strongly inhibit
+
-
 
+
-
the PP1 activity(b), and the MlrA can cleave the MC and dampen
+
-
 
+
-
its toxicity
+
-
 
+
-
(c).</figcaption></figure>
+
-
 
+
-
 
+
-
 
+
-
<p>So the concentration of MCs after  
+
-
 
+
-
degradation can be finally measured by absorption spectrophotometry  
+
-
 
+
-
method with all the calibration curves for all the interactions  
+
above.</p>
above.</p>
-
<p>Firstly a calibration curve of PP1 activity was generated. The  
+
<p>Firstly a calibration curve of PP1 activity was generated. The concentration of substrate pNP is sufficient overall so the PP1 enzyme is saturated and proportion to the
-
concentration of substrate pNP is sufficient overall so the PP1 enzyme is
+
accumulation rate of product pNPP. We could select a proper working concentration of PP1 in the range of nearly linear relationship between PP1 and change rate of 405nm  
-
 
+
-
saturated and proportion to the
+
-
 
+
-
accumulation rate of product pNPP. We  
+
-
 
+
-
could select a proper working concentration of PP1 in the range of nearly  
+
-
 
+
-
linear relationship between PP1 and change rate of 405nm  
+
absorption.</p>
absorption.</p>
-
<figure><img src="./Team Peking firsttry project degradation -  
+
<figure><img src="./Team Peking firsttry project degradation - 2014.igem.org_files/Peking2014jyj_5.png"><figcaption>Fig. 5 Calibration curve of PP1. p-Nitrophenyl Phosphate solution is  
-
 
+
-
2014.igem.org_files/Peking2014jyj_5.png"><figcaption>Fig. 5 Calibration  
+
-
 
+
-
curve of PP1. p-Nitrophenyl Phosphate solution is  
+
-
 
+
-
treated with different
+
-
 
+
-
concentration of PP1 solutions. Absorbance at 405nm was measured after
+
-
80 minutes. The absorbance increases in direct proportion to PP1  
+
treated with different concentration of PP1 solutions. Absorbance at 405nm was measured after 80 minutes. The absorbance increases in direct proportion to PP1  
concentration between 0.02-0.1 unit/ul.</figcaption></figure>
concentration between 0.02-0.1 unit/ul.</figcaption></figure>
-
<p>We  
+
<p>We choose 0.05unit/ul as the working concentration of PP1 and then test the inhibition efficiency of MC-LR because in this region absorbance displays a nearly linear
-
choose 0.05unit/ul as the working concentration of PP1 and then test the  
+
relationship with PP1 concentration less than 0.05 unit/uL. As a result, PP1 activity decreases after the addition of MC-LR and there is a positive correlation between the  
-
inhibition efficiency of MC-LR because in this region absorbance displays a
+
reduction of absorbance and concentration of MC-LR.</p>
-
nearly linear
 
-
relationship with PP1 concentration less than 0.05 unit/uL. As a
+
<figure><img src="./Team Peking firsttry project degradation - 2014.igem.org_files/Peking2014jyj_6.png"><figcaption>Fig. 6 Inhibition efficiency of MC-LR. Working concentration of PP1 is 0.05  
-
result, PP1 activity decreases after the addition of MC-LR and there is a
+
unit/ul. Different concentration of MC-LR samples are added to the reaction system. MC-LR shows strong inhibition of PP1 activity and a rapid change of PP1 activity is  
-
 
+
-
positive correlation between the
+
-
 
+
-
reduction of absorbance and concentration
+
-
 
+
-
of MC-LR.</p>
+
-
 
+
-
 
+
-
<figure><img src="./Team Peking firsttry project
+
-
 
+
-
degradation - 2014.igem.org_files/Peking2014jyj_6.png"><figcaption>Fig. 6
+
-
 
+
-
Inhibition efficiency of MC-LR. Working concentration of PP1 is 0.05
+
-
 
+
-
unit/ul.  
+
-
 
+
-
Different concentration of MC-LR samples are added to the reaction system.  
+
-
 
+
-
MC-LR shows strong inhibition of PP1 activity and a rapid change of PP1  
+
-
 
+
-
activity is  
+
observed between 10ug/L to 30 ug/L of MC-LR concentration.
observed between 10ug/L to 30 ug/L of MC-LR concentration.
Line 923: Line 161:
-
<p>To test the efficiency, a degradation assay is  
+
<p>To test the efficiency, a degradation assay is performed. MlrA coding sequence and PelB signal peptide is inserted into the pET-21a(+) plasmid. This plasmid is  
-
 
+
-
performed. MlrA coding sequence and PelB signal peptide is inserted into  
+
-
 
+
-
the pET-21a(+) plasmid. This plasmid is  
+
-
 
+
-
transformed into E. coli strain BL21
+
-
 
+
-
(DE3) as a secretion vector. Bacteria carrying a blank vector and an
+
-
expression vector without the addition of signal peptide are used as  
+
transformed into E. coli strain BL21(DE3) as a secretion vector. Bacteria carrying a blank vector and an expression vector without the addition of signal peptide are used as  
control.</p>
control.</p>
-
<figure><img src="./Team Peking firsttry project degradation  
+
<figure><img src="./Team Peking firsttry project degradation - 2014.igem.org_files/Peking2014jyj_7.png"><figcaption>Fig. 7 Expression vector for degradation assays. Vector (a) is our secretion
-
- 2014.igem.org_files/Peking2014jyj_7.png"><figcaption>Fig. 7 Expression
+
system. There are 2 negative controls. Blank Vector (b) is used as a negative control of MlrA expression system while vector (c) without any signal peptide is used as a negative  
-
 
+
-
vector for degradation assays. Vector (a) is our secretion
+
-
 
+
-
system. There are 2  
+
-
 
+
-
negative controls. Blank Vector (b) is used as a negative control of MlrA  
+
-
 
+
-
expression system while vector (c) without any signal peptide is used as a  
+
-
 
+
-
negative  
+
control of pelB signal peptide.</figcaption></figure>
control of pelB signal peptide.</figcaption></figure>
-
<p>MC-LR is  
+
<p>MC-LR is co-cultivated with the bacteria and the sample was measured as before to test the degradation efficiency. The MC-LR rest can be tested by spectrophotometry  
-
 
+
-
co-cultivated with the bacteria and the sample was measured as before to  
+
-
 
+
-
test the degradation efficiency. The MC-LR rest can be tested by  
+
-
 
+
-
spectrophotometry  
+
-
 
+
-
described above. The absorbance of bacteria carrying
+
-
 
+
-
vector(b) is higher than that bacteria carrying blank vectors, suggesting that
+
-
 
+
-
MlrA exhibits some activity towards MC-LR.
+
-
 
+
-
But there is no big difference
+
-
 
+
-
between vector (b) and vector (c), which shows no evidence of effect of pelB
+
-
 
+
-
signal peptide so far.</p>
+
-
 
+
-
<figure><img src="./Team Peking firsttry project
+
-
 
+
-
degradation - 2014.igem.org_files/Peking2014jyj_8.png"><figcaption>Fig. 8
+
-
 
+
-
Degradation efficiency of MC-LR. MC-LR is added to E. coli culture
+
-
 
+
-
at a final
+
-
 
+
-
concentration of 100ug/L. After 12, 36 and 72 hours of co-cultivation, the
+
-
sample is sterilized, diluted to 25ug/L and added to the reaction system as
+
described above. The absorbance of bacteria carrying vector(b) is higher than that bacteria carrying blank vectors, suggesting that MlrA exhibits some activity towards MC-LR.
-
describe before.  
+
But there is no big difference between vector (b) and vector (c), which shows no evidence of effect of pelB signal peptide so far.</p>
-
2 Vector described in Fig. 7 are used as control experiment.  
+
<figure><img src="./Team Peking firsttry project degradation - 2014.igem.org_files/Peking2014jyj_8.png"><figcaption>Fig. 8 Degradation efficiency of MC-LR. MC-LR is added to E. coli culture
-
The result shows that MlrA has some degradation activity toward MCs, while
+
at a final concentration of 100ug/L. After 12, 36 and 72 hours of co-cultivation, the sample is sterilized, diluted to 25ug/L and added to the reaction system as describe before.
-
the secretion system seem to be  
+
2 Vector described in Fig. 7 are used as control experiment. The result shows that MlrA has some degradation activity toward MCs, while the secretion system seem to be  
ineffective.</figcaption></figure>
ineffective.</figcaption></figure>
Line 1,000: Line 192:
<p>References</p>
<p>References</p>
-
<p>[1] Gehringer, M. M.,  
+
<p>[1] Gehringer, M. M., Milne, P., Lucietto, F., &amp; Downing, T. G. (2005). Comparison of the structure of key variants of microcystin to vasopressin.Environmental toxicology  
-
 
+
-
Milne, P., Lucietto, F., &amp; Downing, T. G. (2005). Comparison of the  
+
-
 
+
-
structure of key variants of microcystin to vasopressin.Environmental  
+
-
 
+
-
toxicology  
+
and pharmacology, 19(2), 297-303.</p>
and pharmacology, 19(2), 297-303.</p>
-
<p>[2] Runnegar, M.,  
+
<p>[2] Runnegar, M., Berndt, N., Kong, S. M., Lee, E. Y., &amp; Zhang, L. F. (1995). In vivo and in vitro binding of microcystin to protein phosphatase 1 and 2A.Biochemical and  
-
 
+
-
Berndt, N., Kong, S. M., Lee, E. Y., &amp; Zhang, L. F. (1995). In vivo and in  
+
-
 
+
-
vitro binding of microcystin to protein phosphatase 1 and 2A.Biochemical  
+
-
 
+
-
and  
+
biophysical research communications, 216(1), 162-169.</p>
biophysical research communications, 216(1), 162-169.</p>
-
<p>[3]  
+
<p>[3] Bourne, D. G., Jones, G. J., Blakeley, R. L., Jones, A., Negri, A. P., &amp; Riddles, P. (1996). Enzymatic pathway for the bacterial degradation of the cyanobacterial cyclic
-
Bourne, D. G., Jones, G. J., Blakeley, R. L., Jones, A., Negri, A. P., &amp;
+
peptide toxin microcystin LR. Applied and environmental microbiology, 62(11), 4086-4094.</p>
-
 
+
<p>[4] Choi, J. H., &amp; Lee, S. Y. (2004). Secretory and extracellular production of recombinant proteins using Escherichia coli. Applied Microbiology and Biotechnology, 64(5),  
-
Riddles, P. (1996). Enzymatic pathway for the bacterial degradation of the
+
-
 
+
-
cyanobacterial cyclic
+
-
 
+
-
peptide toxin microcystin LR. Applied and  
+
-
 
+
-
environmental microbiology, 62(11), 4086-4094.</p>
+
-
<p>[4] Choi, J. H.,  
+
-
 
+
-
&amp; Lee, S. Y. (2004). Secretory and extracellular production of  
+
-
 
+
-
recombinant proteins using Escherichia coli. Applied Microbiology and  
+
-
 
+
-
Biotechnology, 64(5),  
+
625-635.</p>
625-635.</p>
-
 
+
<!--*******************正文结束*******************正文结束*******************正文结束*******************正文结束*******************正文结束*******************正文结束*******************-->
-
<!--*******************正文结束
+
-
 
+
-
*******************正文结束*******************正文结束*******************正文结
+
-
 
+
-
*******************正文结束*******************正文结束*******************-->
+
<!-- InstanceEndEditable -->
<!-- InstanceEndEditable -->
     <div id="clc"></div>
     <div id="clc"></div>
</div>
</div>
-
      
+
     <div id="clc"></div>
-
 
+
-
<div id="clc"></div>
+
</div>
</div>
-
 
+
</html>
-
 
+
{{:Team:Peking/secondtry/foot}}
-
 
+
-
<div id="bottom">
+
-
<img src="./Team Peking
+
-
 
+
-
example - 2014.igem.org_files/Peking2014wcg_sponsors.png" alt="">  
+
-
 
+
-
</div>
+
-
<div id="down"></div>
+
-
<div id="jumpup" style="right: 0px;"><a
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/example#"><img src="./Team
+
-
 
+
-
Peking example -
+
-
 
+
-
2014.igem.org_files/Peking2014wcg_jumpup.png"></a></div>
+
-
<div
+
-
 
+
-
id="jumpdown" style="right: 0px;"><a
+
-
 
+
-
href="https://2014.igem.org/Team:Peking/example#down"><img
+
-
 
+
-
src="./Team Peking example -
+
-
 
+
-
2014.igem.org_files/Peking2014wcg_jumpdown.png"></a></div>
+
-
 
+
-
</div>
+
-
 
+
-
 
+
-
 
+
-
 
+
-
<p></p>
+
-
<!--
+
-
NewPP limit report
+
-
Preprocessor node count: 14/1000000
+
-
Post-expand include size: 82/2097152 bytes
+
-
Template argument size:
+
-
 
+
-
0/2097152 bytes
+
-
Expensive parser function count: 0/100
+
-
-->
+
-
 
+
-
<!-- Saved in
+
-
 
+
-
parser cache with key 2014_igem_org:pcache:idhash:28726-0!1!0!!en!2!
+
-
 
+
-
edit=0 and timestamp 20141014080421 -->
+
-
<div class="printfooter">
+
-
Retrieved from "<a href="./Team Peking example -
+
-
 
+
-
2014.igem.org_files/Team Peking example -
+
-
 
+
-
2014.igem.org.htm">https://2014.igem.org/Team:Peking/example</a>"</div
+
-
 
+
-
>
+
-
<div id="catlinks"><div id="catlinks"
+
-
 
+
-
class="catlinks catlinks-allhidden"></div></div>
+
-
 
+
-
<!-- end content -->
+
-
<div
+
-
 
+
-
class="visualClear"></div>
+
-
</div>
+
-
    </div>
+
-
<!-- PAGE
+
-
 
+
-
FOOTER -- ITEMS FROM COLUMN ! HAVE BEEN MOVED HERE  -- RDR  --
+
-
 
+
-
>
+
-
<div class="visualClear"></div>
+
-
    <div id="footer-box" class="noprint">
+
-
 
+
-
 
+
-
    <div id="footer">
+
-
              <div id="f-poweredbyico"><a
+
-
 
+
-
href="http://www.mediawiki.org/"><img src="./Team Peking example -
+
-
 
+
-
2014.igem.org_files/poweredby_mediawiki_88x31.png" height="31"
+
-
 
+
-
width="88" alt="Powered by MediaWiki"></a></div>       <div
+
-
 
+
-
id="f-copyrightico"><a
+
-
 
+
-
href="http://creativecommons.org/licenses/by/3.0/"><img src="./Team
+
-
 
+
-
Peking example - 2014.igem.org_files/88x31.png" alt="Attribution 3.0
+
-
 
+
-
Unported" width="88" height="31"></a></div>     <ul id="f-list">
+
-
+
-
 
+
-
  <!-- Recentchanges is not handles well DEBUG -->
+
-
+
-
 
+
-
    <li id="t-recentchanges"><a
+
-
 
+
-
href="https://2014.igem.org/Special:RecentChanges" title="Recent
+
-
 
+
-
changes">Recent changes</a></li>
+
-
 
+
-
    <li id="t-
+
-
 
+
-
whatlinkshere"><a
+
-
 
+
-
href="https://2014.igem.org/Special:WhatLinksHere/Team:Peking/example"
+
-
 
+
-
title="List of all wiki pages that link here [j]" accesskey="j">What links
+
-
 
+
-
here</a></li>
+
-
 
+
-
                        <li id="t-recentchangeslinked"><a
+
-
 
+
-
href="https://2014.igem.org/Special:RecentChangesLinked/Team:Peking/exa
+
-
 
+
-
mple" title="Recent changes in pages linked from this page [k]"
+
-
 
+
-
accesskey="k">Related changes</a></li>
+
-
 
+
-
 
+
-
 
+
-
                <li id="t-
+
-
 
+
-
specialpages"><a href="https://2014.igem.org/Special:SpecialPages"
+
-
 
+
-
title="List of all special pages [q]" accesskey="q">Special pages</a>
+
-
     
+
-
 
+
-
          </li>
+
-
                <li><a
+
-
 
+
-
href="https://2014.igem.org/Special:Preferences">My preferences</a></li>
+
-
 
+
-
 
+
-
          </ul>
+
-
        </div> <!-- close footer -->
+
-
        <div id="footer">
+
-
   
+
-
 
+
-
<ul id="f-list">
+
-
 
+
-
            <li id="t-print"><a
+
-
 
+
-
href="https://2014.igem.org/wiki/index.php?
+
-
 
+
-
title=Team:Peking/example&printable=yes" title="Printable version of this
+
-
 
+
-
page [p]" accesskey="p">Printable version</a>
+
-
            </li>
+
-
 
+
-
     
+
-
 
+
-
      <li id="t-permalink"><a href="https://2014.igem.org/wiki/index.php?
+
-
 
+
-
title=Team:Peking/example&oldid=223016" title="Permanent link to this
+
-
 
+
-
revision of the page">Permanent link</a>
+
-
            </li>
+
-
 
+
-
 
+
-
+
-
 
+
-
        <li id="privacy"><a
+
-
 
+
-
href="https://2014.igem.org/2014.igem.org:Privacy_policy"
+
-
 
+
-
title="2014.igem.org:Privacy policy">Privacy policy</a></li>
+
-
     
+
-
 
+
-
  <li id="disclaimer"><a
+
-
 
+
-
href="https://2014.igem.org/2014.igem.org:General_disclaimer"
+
-
 
+
-
title="2014.igem.org:General disclaimer">Disclaimers</a></li>
+
-
   
+
-
 
+
-
</ul>
+
-
</div> <!-- close footer -->
+
-
    </div> <!-- close footer-box -->
+
-
 
+
-
+
-
+
-
<script>if (window.runOnloadHook) runOnloadHook
+
-
 
+
-
();</script>
+
-
</div>
+
-
<!-- Served in 0.083 secs. -->
+
-
 
+
-
 
+
-
</body></html>
+

Revision as of 14:19, 14 October 2014

Introduction

Apart from lack of sunlight in the water and anoxia caused by cyanobacteria itself, the potential detrimental effect of alga secreted toxin should be noticed. One of the most harmful toxin is called microcystin(MC), which has severe hepatotoxicity. The work in decontamination part is to degrade MCs in water environment during an algal bloom.

To accomplish this work, the potent microcystin-degrading enzyme-MlrA, originally from Sphingomonas is utilized. This enzyme can cleavage the ring structure in microcystin, significantly reducing the toxicity of the protein. Since MCs is released into water by algae, secretion for MlrA is also necessary to facilitate the degradation of MCs.

Based on utility of MlrA, we measure the degradation efficiency of the living bacteria, the periplasmic protein and the lysed whole cell production. The results indicate that our engineered bacteria could degrade MC-LR to a certain extent.

Design

MCs are widespread toxic cyclic heptapeptides produced by many species of algae with different variants(Fig. 1). MCs are synthesized by polyketide synthases (PKS) and non-ribosomal peptide synthetases (NRPS) pathway. Among different variants, MC-LR is a widespread and deleterious one.

Fig. 1 Structure of MCs. MCs share cyclic structure of cyclo-(-D-Ala-L-X- MeAsp-L-Z-Adda-D-Glu-Mdha), where X and Z are variable.[1]

The most known mechanism of its toxicity is that MCs can inhibit protein phosphatase 1(PP1) and 2A (PP2A) specifically and efficiently.[2] The inhibition can lead to a severe disorder of biochemical reaction and disorganization of cytoskeleton in many eukaryotic cell.

Many routine tools of decontamination cannot significantly reduce activities of MCs. Here, we propose a new idea of biodegradation, which could degrade MCs effectively without apparent side effects.

Many bacterial species have been reported to have ability to degrade MCs. Among them, a gene cluster in Sphingomonas has been found and sequenced. The cluster includes four genes, mlrA, mlrB, mlrC and mlrD, which can hydrolysze MCs and facilitate absorption of the products as carbon source. During the degradation process, the first-step linearized product, which is catalyzed by MlrA, shows much weaker hepatoxin compared with MCs. In the experiment of mouse bioassay, up to 250 mg/kg of linearized MC-LR shows no toxicity to mouse, much higher than 50% lethal dose 50mg/kg of cyclic MC-LR. Furthermore, the linearization also raise the median inhibition concentration to 95nM, around 160 times higher than original 0.6nM. [3] (Fig. 2)

Fig. 2 First step of biodegradation of MC-LR. MlrA mediates breaking peptide bond between Adda and Arg, which leads to significant decrease of toxicity.[3]

In order to enhance the degradation effect, location of MlrA should be considered. There are some porins proteins on the outer membrane of E. coli, which allow small molecules, including MCs, to penetrate the membrane. Consequently, it is sufficient to secret MlrA into periplasm for decontamination.

Result

We construct a vector for secretion using Sec pathway(Fig. 3), which belongs to Type II secretion system that exports proteins to periplasm. During the exporting process, target protein is translocated across inner membrane in unfolded conformation and is refolded in the periplasm.[4]

A signal peptide called Pectate lyase B (PelB) in Sec pathway is required for the transportation system to recognize the protein to be export and the signal peptide can be cut off in the periplasm. Since the PelB signal peptide holds little limitation to the following protein’s molecular weight, we finally decide to use PelB to secrete the MlrA protein.

Fig. 3 Secretion vector of mlrA. The fusion protein includes Type II secretion peptide pelB and mlrA. The construction as a whole is expressed in pET-21a(+) plasmid.

The concentration of MCs can be tested in PP1 inhibition assays. As mentioned, MCs can inhibit the activity of PP1 effectively. Thus we constructed a standard curve reflecting the relation between the concentration of MC and the relative activity of PP1. Therefore, the concentration of MCs in any solution could be quantified by measuring corresponding PP1 relative activity.

p-Nitrophenyl phosphate (pNPP) is a widely used non-specific substrate to test protein phosphatase activity and it can be hydrolyzed to p-Nitrophenyl(pNP) with characteristic absorption at 405nm. The measurement of PP1 activity is based on the accumulation of pNP. Considering the microcystin(MC) is the inhibitor of PP1 and MlrA can disrupt MC’s structure to disrupt its inhibitory effect, the MlrA activity can be detected by quantification of absorption at 405nm. (Fig. 4)

Fig. 4 Measurement of MlrA activity. The OD405 indicates the concentration of pNP, and the change of pNP level could reflect the PP1 activity(a). MC can strongly inhibit the PP1 activity(b), and the MlrA can cleave the MC and dampen its toxicity(c).

So the concentration of MCs after degradation can be finally measured by absorption spectrophotometry method with all the calibration curves for all the interactions above.

Firstly a calibration curve of PP1 activity was generated. The concentration of substrate pNP is sufficient overall so the PP1 enzyme is saturated and proportion to the accumulation rate of product pNPP. We could select a proper working concentration of PP1 in the range of nearly linear relationship between PP1 and change rate of 405nm absorption.

Fig. 5 Calibration curve of PP1. p-Nitrophenyl Phosphate solution is treated with different concentration of PP1 solutions. Absorbance at 405nm was measured after 80 minutes. The absorbance increases in direct proportion to PP1 concentration between 0.02-0.1 unit/ul.

We choose 0.05unit/ul as the working concentration of PP1 and then test the inhibition efficiency of MC-LR because in this region absorbance displays a nearly linear relationship with PP1 concentration less than 0.05 unit/uL. As a result, PP1 activity decreases after the addition of MC-LR and there is a positive correlation between the reduction of absorbance and concentration of MC-LR.

Fig. 6 Inhibition efficiency of MC-LR. Working concentration of PP1 is 0.05 unit/ul. Different concentration of MC-LR samples are added to the reaction system. MC-LR shows strong inhibition of PP1 activity and a rapid change of PP1 activity is observed between 10ug/L to 30 ug/L of MC-LR concentration.

To test the efficiency, a degradation assay is performed. MlrA coding sequence and PelB signal peptide is inserted into the pET-21a(+) plasmid. This plasmid is transformed into E. coli strain BL21(DE3) as a secretion vector. Bacteria carrying a blank vector and an expression vector without the addition of signal peptide are used as control.

Fig. 7 Expression vector for degradation assays. Vector (a) is our secretion system. There are 2 negative controls. Blank Vector (b) is used as a negative control of MlrA expression system while vector (c) without any signal peptide is used as a negative control of pelB signal peptide.

MC-LR is co-cultivated with the bacteria and the sample was measured as before to test the degradation efficiency. The MC-LR rest can be tested by spectrophotometry described above. The absorbance of bacteria carrying vector(b) is higher than that bacteria carrying blank vectors, suggesting that MlrA exhibits some activity towards MC-LR. But there is no big difference between vector (b) and vector (c), which shows no evidence of effect of pelB signal peptide so far.

Fig. 8 Degradation efficiency of MC-LR. MC-LR is added to E. coli culture at a final concentration of 100ug/L. After 12, 36 and 72 hours of co-cultivation, the sample is sterilized, diluted to 25ug/L and added to the reaction system as describe before. 2 Vector described in Fig. 7 are used as control experiment. The result shows that MlrA has some degradation activity toward MCs, while the secretion system seem to be ineffective.





References

[1] Gehringer, M. M., Milne, P., Lucietto, F., & Downing, T. G. (2005). Comparison of the structure of key variants of microcystin to vasopressin.Environmental toxicology and pharmacology, 19(2), 297-303.

[2] Runnegar, M., Berndt, N., Kong, S. M., Lee, E. Y., & Zhang, L. F. (1995). In vivo and in vitro binding of microcystin to protein phosphatase 1 and 2A.Biochemical and biophysical research communications, 216(1), 162-169.

[3] Bourne, D. G., Jones, G. J., Blakeley, R. L., Jones, A., Negri, A. P., & Riddles, P. (1996). Enzymatic pathway for the bacterial degradation of the cyanobacterial cyclic peptide toxin microcystin LR. Applied and environmental microbiology, 62(11), 4086-4094.

[4] Choi, J. H., & Lee, S. Y. (2004). Secretory and extracellular production of recombinant proteins using Escherichia coli. Applied Microbiology and Biotechnology, 64(5), 625-635.