Team:ULB-Brussels/Project/Methods
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- | + | <a href="https://2014.igem.org/Team:ULB-Brussels/Project/WetLab">WetLab</a> | |
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- | <a href="https://2014.igem.org/Team:ULB-Brussels/Project/WetLab">WetLab</a | + | |
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</section> | </section> | ||
<section style="text-align: justify; margin: 50px"> | <section style="text-align: justify; margin: 50px"> | ||
- | <h1>WetLab</h1> | + | <h1>WetLab Structure</h1> |
<p>The design of the <i>Mighty Coli</i> system requires several intermediate constructions and experiments which will be explained on this page. For the results and the comments of each experiment, | <p>The design of the <i>Mighty Coli</i> system requires several intermediate constructions and experiments which will be explained on this page. For the results and the comments of each experiment, | ||
<a href="https://2014.igem.org/Team:ULB-Brussels/Project/Results"><i> see Results </i></a>. </p> | <a href="https://2014.igem.org/Team:ULB-Brussels/Project/Results"><i> see Results </i></a>. </p> | ||
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<h3>PCR cloning: Clontech™ In-Fusion HD Cloning Plus</h3> | <h3>PCR cloning: Clontech™ In-Fusion HD Cloning Plus</h3> | ||
<p>The In-Fusion Enzyme premix fuses PCR-generated sequences and linearized vectors efficiently and precisely, utilizing a 15 bp overlap at their ends. This 15 bp overlap can be engineered by designing custom primers for amplification of the desired sequences. This method can be used to clone single or multiple fragments into a single vector without subcloning.</p> | <p>The In-Fusion Enzyme premix fuses PCR-generated sequences and linearized vectors efficiently and precisely, utilizing a 15 bp overlap at their ends. This 15 bp overlap can be engineered by designing custom primers for amplification of the desired sequences. This method can be used to clone single or multiple fragments into a single vector without subcloning.</p> | ||
+ | </section> | ||
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<section style=" margin: 20px"></section> | <section style=" margin: 20px"></section> | ||
- | + | --________________________________________________________________________________________________________________-- | |
- | + | -- INITIAL MATERIAL AND METHODS -- | |
<section style="text-align: justify; margin: 50px"> | <section style="text-align: justify; margin: 50px"> | ||
<h3>Materials</h3> | <h3>Materials</h3> | ||
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<p>The usual equipment was worn: gloves, glasses and coat (especially because of UV emission & Ethidium Bromide during electrophoresis). There's more information in the page related with Safety.</p> | <p>The usual equipment was worn: gloves, glasses and coat (especially because of UV emission & Ethidium Bromide during electrophoresis). There's more information in the page related with Safety.</p> | ||
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<h3>Methods</h3> | <h3>Methods</h3> | ||
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<p>First, birth and growing of bacteria populations.</p> | <p>First, birth and growing of bacteria populations.</p> | ||
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<p>Secondly, insertion of the biobricks and plasmids chosen with E. Coli (Electroporation method, PCR Amplification, Electrophoresis).</p> | <p>Secondly, insertion of the biobricks and plasmids chosen with E. Coli (Electroporation method, PCR Amplification, Electrophoresis).</p> | ||
<p>Just after this step, bacteria selection (in function of the quantities od oligopeptids or phoA+prolin) and inclusion of a TA system in E. Coli/S. Cerevisae.</p> | <p>Just after this step, bacteria selection (in function of the quantities od oligopeptids or phoA+prolin) and inclusion of a TA system in E. Coli/S. Cerevisae.</p> | ||
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<p>Then, addiction of fluorescent proteins (GFP, RFP) and determination of the quantities and the principal properties of our bacteria | <p>Then, addiction of fluorescent proteins (GFP, RFP) and determination of the quantities and the principal properties of our bacteria | ||
(including Emission Spectroscopy) and analize of their genetical sequences.</p> | (including Emission Spectroscopy) and analize of their genetical sequences.</p> | ||
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<p>Finally, conservation of bacteria populations producting the desired molecules or proteins in good quantities, at cold temperature in petri boxes and bioreactor containers.</p> | <p>Finally, conservation of bacteria populations producting the desired molecules or proteins in good quantities, at cold temperature in petri boxes and bioreactor containers.</p> | ||
+ | <p>The Kits we used were detailed above in this page.</p> | ||
+ | </section>--________________________________________________________________________________________________________________--> | ||
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</td> | </td> | ||
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<a href="https://2014.igem.org/Team:ULB-Brussels/Project"><b> < Introduction </b></a> | <a href="https://2014.igem.org/Team:ULB-Brussels/Project"><b> < Introduction </b></a> | ||
<br/><br/><br/></section> </td><td><section style="text-align: right"> | <br/><br/><br/></section> </td><td><section style="text-align: right"> | ||
- | <a href="https://2014.igem.org/Team:ULB-Brussels/Project/ | + | <a href="https://2014.igem.org/Team:ULB-Brussels/Project/Results"><b> Results > </b></a> |
<br/><br/><br/></section></td></tr> | <br/><br/><br/></section></td></tr> |
Latest revision as of 20:22, 8 September 2014
$~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ \newcommand{\MyColi}{{\small Mighty\hspace{0.12cm}Coli}} \newcommand{\Stabi}{\small Stabi}$ $\newcommand{\EColi}{\small E.coli} \newcommand{\SCere}{\small S.cerevisae}\\[0cm] ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ \newcommand{\PI}{\small PI}$ $\newcommand{\Igo}{\Large\mathcal{I}} \newcommand{\Tgo}{\Large\mathcal{T}} \newcommand{\Ogo}{\Large\mathcal{O}} ~$
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