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 <i>E.coli</i> | This summer, CHINA_CD_UESTC team made a high-efficiency enzymatic biofuel cell (EBFC) by constructing Magnetotactic <i>E.coli</i> | ||
− | which can produce Laccase. In order to achieve this goal, we | + | which can produce Laccase. In order to achieve this goal, we co-transferred a gene coding the fusion protein which connected <i>laccase</i> with <i>MamW</i>. The protein <i>MamW</i> 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 alsotransferred four operons – <i>mamAB</i>, <i>mamGFDC</i>, <i>mamXY</i>, <i>mms6</i> - which are related to magnetosome's formation into |
− | + | <i>E.coli</i>. | |
− | + | Once we put the magnetotactic | |
<i>E.coli</i> | <i>E.coli</i> | ||
which produce Laccase onto the cathode, can we utilize the magnetotaxis to gather oxidases which will efficiently improve the efficiency of EBFC. By this reason, we designed vectors and experimental process as three parts: <i>mamW</i> + <i>RFP</i> + <i>Laccase</i>, <i>mamAB</i> and <i>mamGFDC</i> + <i>mamXY</i> + <i>mms6</i>. | which produce Laccase onto the cathode, can we utilize the magnetotaxis to gather oxidases which will efficiently improve the efficiency of EBFC. By this reason, we designed vectors and experimental process as three parts: <i>mamW</i> + <i>RFP</i> + <i>Laccase</i>, <i>mamAB</i> and <i>mamGFDC</i> + <i>mamXY</i> + <i>mms6</i>. |
Revision as of 11:08, 13 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.