Team:Paris Bettencourt/Parts

From 2014.igem.org

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<p id=top><a href="#topheader"><img src="https://static.igem.org/mediawiki/2014/4/41/Arrow.png"></a></p>
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<img src="https://static.igem.org/mediawiki/2014/4/4e/PB14parts.png" class=nameimg>
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<div id=logo><img id=logorose src="https://static.igem.org/mediawiki/2014/2/28/Logorose.png"></div>
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<div id=fond>
<div id=fond>
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        <table id=headtable>
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<tr>
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<td><b>SMELL THE ROSES</b></br>
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<p class=text1><ul><li><a href="#part1">BBa_K1403003</a></li><li><a href="#part2">BBa_K1403006</a></li><li><a href="#part3">BBa_K1403009</a></li><li><a href="#part4">BBa_K1403012</a></li><li><a href="#part5">BBa_K1403017</a></li><li><a href="#part6">BBa_K1403019</a></li><li><a href="#part11">BBa_K1403013</a></li><li><a href="#part6">BBa_K1403019</a></li></ul></p></td>
 +
<td><b>SOMETHING FISHY</b></br>
 +
<p class=text1><ul><li><a href="#part7">BBa_K1403015</a></li></ul></br>
 +
                        <td><b>DON'T SWEAT IT</b><p class=text1><ul><li><a href="#part8">BBa_K1403018</a></li></ul></p></td>
 +
<td><b>INTERLAB STUDY</b></br>
 +
<p class=text1><ul><li><a href="#part9">BBa_K1403000</a></li><li><a href="#part10">BBa_K1403001</a></li></ul></p></td>
 +
</tr>
</table>
</table>
         </div>
         </div>
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        <div class=project><h6>Smell the roses</h6>
 +
        <div class=part id=part1><p class=text1><a target="blank" href="http://parts.igem.org/Part:BBa_K1403003"><u>BBa_K1403003</a> - Limonene synthase</u> Limonene syntheses enzyme converts farnesyl-diphosphate to (+)-limonene, which is a component of lemon scent.</p></div>
 +
        <div class=part id=part2><p class=text1><u><a target="blank" href="http://parts.igem.org/Part:BBa_K1403006">BBa_K1403006</a> - Jasmonic acid carboxyl methyltransferase</u> Jasmonic acid carboxyl methyltransferase catalyzes the formation of methyl jasmonate from jasmonic acid.</p></div>
 +
<div class=part id=part3><p class=text1><u><a target="blank" href="http://parts.igem.org/Part:BBa_K1403009">BBa_K1403009</a> - <i>bmst1</i></u> BMST1 enzyme that catalyzes production of methyl salicylate from salicylic acid. Methyl salicylate has a wintergreen smell. It laso produces floral smell (Methyl benzoate) from Benzoic acid.</p> </div>
 +
        <div class=part id=part4><p class=text1><u><a target="blank" href="http://parts.igem.org/Part:BBa_K1403012">BBa_K1403012</a> - alcohol acetyltransferase I</u> This enzyme converts isoamyl alcohol to isoamyl acetate producing banana odor.</p></div>
 +
  <div class=part id=part5><p class=text1><a target="blank" href="http://parts.igem.org/Part:BBa_K1403013"><u>BBa_K1403013</a> - Germacradienol/germacrene D synthase</u> This enzyme produces Geosmin (rain smell) from farnesyl diphosphate.</p></div>
 +
        </div>   
 +
<div class=part id=part6><p class=text1><a target="blank" href="http://parts.igem.org/Part:BBa_K1403017"><u>BBa_K1403017</a> - <i>aldB</i></u> AldB stimulates acetolactate decarboxylase activities to transform acetolactate to acetoin, which smells like butter.</p></div>
 +
        <div class=part id=part7><p class=text1><a target="blank" href="http://parts.igem.org/Part:BBa_K1403019"><u>BBa_K1403019</a> - <i>ilvBN</i></u> <i>ilvBN</i> gene encodes for acetolactate synthase process. We used it to increase basal production of acetolactate, which serves as precursor for acetoin production.</p></div>
-
<br><br><br>
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        <div class=project><h6>Something fishy</h6>
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<div id=part1>
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            <div class=part id=part7><p class=text1><a target="blank" href="http://parts.igem.org/Part:BBa_K1403015"><u>BBa_K1403015</a> - Trimethylamine monooxygenase</u> Trimethylamine monooxygenase enzyme degrades Trimethylamine (fish odor) into non-smelly compund. It also produces indigo (blue pigment) form  tryptophan.</p></div>
-
<p class=text2></p>
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        </div>
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<h6>Introduction</h6><br>
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<p class=text1>Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut imperdiet diam eget quam imperdiet imperdiet. Mauris dapibus risus felis, sed ornare diam accumsan aliquet. Sed eu turpis porta, porttitor tortor et, condimentum augue. Curabitur a maximus nisi. Vivamus vitae magna ex. Donec congue auctor odio vitae tempus. In a gravida neque, et tristique tortor. Phasellus a odio sit amet enim ornare lobortis. Morbi sodales, diam non rutrum aliquam, ligula mauris consectetur urna, sed interdum quam risus sit amet enim. Aenean euismod enim magna, id pretium eros molestie non. Proin rutrum lobortis leo, sit amet congue erat. Nulla congue pellentesque augue porta dignissim. Pellentesque quis ex sollicitudin, condimentum risus varius, aliquet ipsum. Ut pulvinar aliquet maximus. Praesent imperdiet interdum commodo. </p>
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        </div>
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        <div class=project><h6>Don't sweat it</h6>
 +
 
 +
        <div class=part id=part8><p class=text1><u><a target="blank" href="http://parts.igem.org/Part:BBa_K1403015">BBa_K1403018 - <i>agaA</i></a></u> <i>AgaA</i> is a gene present in Corynebacterium striatum and it is the main responsible for body odor. It transforms 3-methyl-2-hexenoic acid into 3-hydroxy-3-methylhexanoic acid which smells like sweat.</p></div>
 +
        </div>
 +
<div class=project><h6>Interlab study</h6>
 +
  <div class=part id=part9><p class=text1><u><a target="blank" href="http://parts.igem.org/Part:BBa_K1403000">BBa_K1403000</a> - GFP under strong promoter in pSB1C3</u> Measurment kit test of Part:<a href="http://parts.igem.org/Part:BBa_J23101">BBa_J23101</a> in pSB1C3. This part is a tween of <a href="http://parts.igem.org/Part:BBa_I20260">BBa_I20260</a> but in a high copy pSB1C3 plasmid. </p></div>
 +
<div class=part id=part10><p class=text1><u><a target="blank" href="http://parts.igem.org/Part:BBa_J23101">BBa_J23101</a>BBa_K1403000</a> - GFP generator under a weak promoter in pSB1C3</u> Measurment kit test of <a href="http://parts.igem.org/Part:BBa_J23115">BBa_J23115</a> in pSB1C3. It is placed in a high coply plasmid,the GFP expression is under a weak Anderson promoter.</p></div>
</div>
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<h6>Aims</h6><br>
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<p class=text1>Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut imperdiet diam eget quam imperdiet imperdiet. Mauris dapibus risus felis, sed ornare diam accumsan aliquet. Sed eu turpis porta, porttitor tortor et, condimentum augue. Curabitur a maximus nisi. Vivamus vitae magna ex. Donec congue auctor odio vitae tempus. In a gravida neque, et tristique tortor. Phasellus a odio sit amet enim ornare lobortis. Morbi sodales, diam non rutrum aliquam, ligula mauris consectetur urna, sed interdum quam risus sit amet enim. Aenean euismod enim magna, id pretium eros molestie non. Proin rutrum lobortis leo, sit amet congue erat. Nulla congue pellentesque augue porta dignissim. Pellentesque quis ex sollicitudin, condimentum risus varius, aliquet ipsum. Ut pulvinar aliquet maximus. Praesent imperdiet interdum commodo. </p>
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<p class=text2></p>
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<h6>Results</h6><br>
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<p class=text1>Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut imperdiet diam eget quam imperdiet imperdiet. Mauris dapibus risus felis, sed ornare diam accumsan aliquet. Sed eu turpis porta, porttitor tortor et, condimentum augue. Curabitur a maximus nisi. Vivamus vitae magna ex. Donec congue auctor odio vitae tempus. In a gravida neque, et tristique tortor. Phasellus a odio sit amet enim ornare lobortis. Morbi sodales, diam non rutrum aliquam, ligula mauris consectetur urna, sed interdum quam risus sit amet enim. Aenean euismod enim magna, id pretium eros molestie non. Proin rutrum lobortis leo, sit amet congue erat. Nulla congue pellentesque augue porta dignissim. Pellentesque quis ex sollicitudin, condimentum risus varius, aliquet ipsum. Ut pulvinar aliquet maximus. Praesent imperdiet interdum commodo. </p>
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<p class=text2></p>
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<h6>Motivation</h6><br>
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<p class=text1>Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut imperdiet diam eget quam imperdiet imperdiet. Mauris dapibus risus felis, sed ornare diam accumsan aliquet. Sed eu turpis porta, porttitor tortor et, condimentum augue. Curabitur a maximus nisi. Vivamus vitae magna ex. Donec congue auctor odio vitae tempus. In a gravida neque, et tristique tortor. Phasellus a odio sit amet enim ornare lobortis. Morbi sodales, diam non rutrum aliquam, ligula mauris consectetur urna, sed interdum quam risus sit amet enim. Aenean euismod enim magna, id pretium eros molestie non. Proin rutrum lobortis leo, sit amet congue erat. Nulla congue pellentesque augue porta dignissim. Pellentesque quis ex sollicitudin, condimentum risus varius, aliquet ipsum. Ut pulvinar aliquet maximus. Praesent imperdiet interdum commodo. </p>
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{{:Team:Paris_Bettencourt/Footer}}
{{:Team:Paris_Bettencourt/Footer}}

Latest revision as of 03:52, 18 October 2014

Smell the roses

BBa_K1403003 - Limonene synthase Limonene syntheses enzyme converts farnesyl-diphosphate to (+)-limonene, which is a component of lemon scent.

BBa_K1403006 - Jasmonic acid carboxyl methyltransferase Jasmonic acid carboxyl methyltransferase catalyzes the formation of methyl jasmonate from jasmonic acid.

BBa_K1403009 - bmst1 BMST1 enzyme that catalyzes production of methyl salicylate from salicylic acid. Methyl salicylate has a wintergreen smell. It laso produces floral smell (Methyl benzoate) from Benzoic acid.

BBa_K1403012 - alcohol acetyltransferase I This enzyme converts isoamyl alcohol to isoamyl acetate producing banana odor.

BBa_K1403013 - Germacradienol/germacrene D synthase This enzyme produces Geosmin (rain smell) from farnesyl diphosphate.

BBa_K1403017 - aldB AldB stimulates acetolactate decarboxylase activities to transform acetolactate to acetoin, which smells like butter.

BBa_K1403019 - ilvBN ilvBN gene encodes for acetolactate synthase process. We used it to increase basal production of acetolactate, which serves as precursor for acetoin production.

Something fishy

BBa_K1403015 - Trimethylamine monooxygenase Trimethylamine monooxygenase enzyme degrades Trimethylamine (fish odor) into non-smelly compund. It also produces indigo (blue pigment) form tryptophan.

Don't sweat it

BBa_K1403018 - agaA AgaA is a gene present in Corynebacterium striatum and it is the main responsible for body odor. It transforms 3-methyl-2-hexenoic acid into 3-hydroxy-3-methylhexanoic acid which smells like sweat.

Interlab study

BBa_K1403000 - GFP under strong promoter in pSB1C3 Measurment kit test of Part:BBa_J23101 in pSB1C3. This part is a tween of BBa_I20260 but in a high copy pSB1C3 plasmid.

BBa_J23101BBa_K1403000 - GFP generator under a weak promoter in pSB1C3 Measurment kit test of BBa_J23115 in pSB1C3. It is placed in a high coply plasmid,the GFP expression is under a weak Anderson promoter.

Centre for Research and Interdisciplinarity (CRI)
Faculty of Medicine Cochin Port-Royal, South wing, 2nd floor
Paris Descartes University
24, rue du Faubourg Saint Jacques
75014 Paris, France
+33 1 44 41 25 22/25
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