Difference between revisions of "Team:CHINA CD UESTC/Design"
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<div class="grid_8"> | <div class="grid_8"> | ||
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− | This summer, CHINA_CD_UESTC team worked very hard in order to make a high-efficiency enzymatic biofuel cell (EBFC) by enriching the | + | This summer, CHINA_CD_UESTC team worked very hard in order to make a high-efficiency enzymatic biofuel cell (EBFC) by enriching the Laccase on the cathode electrode. We transferred four operons-- |
<i>mamAB</i> | <i>mamAB</i> | ||
, | , | ||
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the modified | the modified | ||
<i>E.coli</i> | <i>E.coli</i> | ||
− | can produce | + | can produce Laccase-carried magnetosome. Therefore, we could immobilize and enrich Laccase on the cathode electrode by magnet. In our project, we improved previous <i>laccase</i> part ( |
<a href="http://parts.igem.org/Part:BBa_K863005">BBa_K863005</a> | <a href="http://parts.igem.org/Part:BBa_K863005">BBa_K863005</a> | ||
) and made it visible. | ) and made it visible. | ||
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<img src="https://static.igem.org/mediawiki/2015/0/0b/CHINA_CD_UESTC_DESIGN_overview.png" width="70%"> | <img src="https://static.igem.org/mediawiki/2015/0/0b/CHINA_CD_UESTC_DESIGN_overview.png" width="70%"> | ||
<p id="pic_illustration"> <strong>Figure 1</strong> | <p id="pic_illustration"> <strong>Figure 1</strong> | ||
− | . Schematic diagram of our EBFC. On the anode, glucose is oxidized to gluconolactone, where the electrons are transferred from the GOX to CNT. On the cathode, | + | . Schematic diagram of our EBFC. On the anode, glucose is oxidized to gluconolactone, where the electrons are transferred from the GOX to CNT. On the cathode, Laccase is immobilized and enriched on the electrode by magnetosome. Electrons are transferred from CNT to Laccase where dioxygen is reduced to water. |
</p> | </p> | ||
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operon is one of the four core operons related to magnetosomes formation | operon is one of the four core operons related to magnetosomes formation | ||
<sup>[9]</sup> | <sup>[9]</sup> | ||
− | . For consideration of the operon length (up to 17kb), compatibility and vector carrying capacity, we finally chose the vector pET-28a | + | . For consideration of the whole operon length (up to 17kb), compatibility and vector carrying capacity, we finally chose the vector pET-28a |
<sup>[6]</sup> as backbone. Accordingly, we put the | <sup>[6]</sup> as backbone. Accordingly, we put the | ||
<i>mamAB</i> | <i>mamAB</i> | ||
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<div class="clear"></div> | <div class="clear"></div> | ||
<p> | <p> | ||
− | Meanwhile, in order to make Laccase enriched, we designed a recombinant vector to fuse express <i>mamW</i> and <i>RFP</i> with the <i>laccase</i>. The protein MamW, a magnetosome transmembrane protein, can connect | + | Meanwhile, in order to make Laccase enriched, we designed a recombinant vector to fuse express <i>mamW</i> and <i>RFP</i> with the <i>laccase</i>. The protein MamW, a magnetosome transmembrane protein, can connect Laccase and magnetosome. The RFP reporter can make the novel structure visible. So we designed the vector piGEM-WRL. As the vector will be co-transferred with another two vectors, we chose the pACYCDuet-1 as the backbone. |
</p> | </p> | ||
<div class="project_pic"> | <div class="project_pic"> | ||
<img src="https://static.igem.org/mediawiki/2015/9/90/CHINA_CD_UESTC_DESIGN_LACCASE01.png" width="60%"> | <img src="https://static.igem.org/mediawiki/2015/9/90/CHINA_CD_UESTC_DESIGN_LACCASE01.png" width="60%"> | ||
<p id="pic_illustration" style="text-align:center"> | <p id="pic_illustration" style="text-align:center"> | ||
− | <strong>Figure 9.</strong> Schematic of piGEM-WRL construction. The protein MamW is a magnetosome transmembrane protein <sup>[2]</sup> | + | <strong>Figure 9.</strong> Schematic of piGEM-WRL construction. The protein MamW is a magnetosome transmembrane protein <sup>[2]</sup>, <i>mamW</i> gene was amplified from the <strong><i>Magnetospirillum gryphiswaldense MSR-1</i></strong> |
</p> | </p> | ||
</div> | </div> |
Revision as of 14:18, 17 September 2015
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DESIGN
We mainly designed three vectors respectively carrying mamW + RFP + laccase , mamAB and mamGFDC + mms6 + mamXY . Our purpose is to accomplish our magnetotactic E.coli and fix the Laccase on the magnetosome membrane. Finally we put the magnetosomes carrying Laccases into our enzymatic bio-fuel cell (EBFC).