Team:Yale/Our Project/Methods

From 2010.igem.org

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experimental methods
experimental methods
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<h1>Plasmid Parts</h1>
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Our plasmid is composed of three parts: a promoter and a terminator Biobrick as well as a novel addition to the biobrick library, the phsABC gene that is known to encode Thiosulfate Reductase.
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(1) phsABC gene and vector
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<img src="https://static.igem.org/mediawiki/2010/thumb/f/f8/Phsplasmiddiagram.png/800px-Phsplasmiddiagram.png" />
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This central component encodes Thiosulfate Reductase. The gene phsABC was obtained from Dr. Jay Keasling laboratory at University of California, Berkeley. According to their results, Thiosulfate Reductase encoded in the plasmid pSB74 showed the highest activity, so we obtained phsABC from the plasmid pSB74. E. coli DH5α strain were used for plasmid manipulation.
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<a id="link" href="javascript:ReverseDisplay('background')">Read more about the background of the PHS gene</a>
<a id="link" href="javascript:ReverseDisplay('background')">Read more about the background of the PHS gene</a>
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</li> PHS gene: Important part of anaerobic bacterial respiration/metabolism</br></br>
</li> PHS gene: Important part of anaerobic bacterial respiration/metabolism</br></br>
• Studied since 1970's; several plasmids found (ie: phs pEB40, pSB103, pSB77, pSB107 etc)</br></br>
• Studied since 1970's; several plasmids found (ie: phs pEB40, pSB103, pSB77, pSB107 etc)</br></br>

Revision as of 00:35, 28 October 2010

iGEM Yale

experimental methods

Plasmid Parts

Our plasmid is composed of three parts: a promoter and a terminator Biobrick as well as a novel addition to the biobrick library, the phsABC gene that is known to encode Thiosulfate Reductase.

(1) phsABC gene and vector

This central component encodes Thiosulfate Reductase. The gene phsABC was obtained from Dr. Jay Keasling laboratory at University of California, Berkeley. According to their results, Thiosulfate Reductase encoded in the plasmid pSB74 showed the highest activity, so we obtained phsABC from the plasmid pSB74. E. coli DH5α strain were used for plasmid manipulation.

Read more about the background of the PHS gene