Difference between revisions of "Team:CHINA CD UESTC/Design"
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− | This summer, CHINA_CD_UESTC team made a high-efficiency enzymatic biofuel cell (EBFC) by constructing Magnetotactic | + | This summer, CHINA_CD_UESTC team made a high-efficiency <strong>enzymatic biofuel cell (EBFC)</strong> by constructing Magnetotactic |
<i>E.coli</i> | <i>E.coli</i> | ||
which can produce Laccase. In order to achieve this goal, we co-transferred a gene coding the fusion protein which connected Laccase with MamW. The protein MamW which is a magnetosome transmembrane protein as a connection between magnetosome and Laccase. Therefore, we can immobilize Laccase on the magnetosome membrane (MM). And we also transferred four operons – | which can produce Laccase. In order to achieve this goal, we co-transferred a gene coding the fusion protein which connected Laccase with MamW. The protein MamW which is a magnetosome transmembrane protein as a connection between magnetosome and Laccase. Therefore, we can immobilize Laccase on the magnetosome membrane (MM). And we also transferred four operons – | ||
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− | We designed an enzymatic biofuel cell (EBFC) schematic diagram as following which was our prototype of the project: | + | We designed an enzymatic biofuel cell (EBFC) schematic diagram as following which was our <strong>prototype</strong> of the project: |
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Revision as of 01:01, 14 September 2015
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DESIGN
We mainly designed three vectors respectively carrying laccase + mamW + RFP, mamAB and mamGFDC + mamXY + mms6. The purpose is to accomplish our magnetotactic E.coli with laccase and put them into our enzyme bio-fuel cell (EBFC). let's have a detailed view in the design process.