Team:HKU HongKong/Project/Background.html

From 2012.igem.org

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advantageous because the pvdQ gene is constitutively transcribed  
advantageous because the pvdQ gene is constitutively transcribed  
regardless of environmental and endogenous factors.&nbsp; </p>
regardless of environmental and endogenous factors.&nbsp; </p>
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<p style="text-align: left; font-style: normal; font-variant: normal; font-weight: normal; font-size: 13px; vertical-align: baseline; color: rgb(85, 85, 85); font-family: Lato, Tahoma, Arial, sans-serif; letter-spacing: normal; line-height: 19.5px; orphans: 2; text-indent: 0px; text-transform: none; white-space: normal; widows: 2; word-spacing: 0px; -webkit-text-size-adjust: auto; -webkit-text-stroke-width: 0px; border: 0px none; margin-left: 0px; margin-right: 0px; margin-top: 0px; margin-bottom: 20px; padding: 0px">
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<font color="#232323">&nbsp;This synthetic genetic pathway is an auto-inductive system where pvdQ
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protein production will specifically depend on the presence of N-dodecanoyl-L-Homoserine
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lactone and its coupling to the LuxR protein. Furthermore, several
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derivatives of the genetic system design can desirably optimize pvdQ
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yield. For instance, implementation of a positive feedback loop will
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upregulate luxR production by the simple placement of the luxR gene
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downstream of PluxR Larger amounts of luxR will therefore bind a greater
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number of AHL molecules secreted by P.aeuroginosa biofilms, thereby
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activating the acylase gene’s expression at a low cell density. Hence,
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the final biobrick produced by iGEM HKU is an AHL-inducible acylase
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system. </font> </p>
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<p style="text-align: left; font-style: normal; font-variant: normal; font-weight: normal; font-size: 13px; vertical-align: baseline; color: #232323; font-family: Lato, Tahoma, Arial, sans-serif; letter-spacing: normal; line-height: 19.5px; orphans: 2; text-indent: 0px; text-transform: none; white-space: normal; widows: 2; word-spacing: 0px; -webkit-text-size-adjust: auto; -webkit-text-stroke-width: 0px; border: 0px none; margin-left: 0px; margin-right: 0px; margin-top: 0px; margin-bottom: 20px; padding: 0px">
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&nbsp;Although the synthetic E.coli cannot be introduced into infected humans
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or soil and water (sources of P.aueroginosa) itself, it can be used to
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mass-produce pvdQ which can then be packaged into small protein-delivery
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bores. These structures can be stimulated to efficiently release pvdQ at
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the desired location, mimicking conventional drug-delivery systems.
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While the mechanism of pvdQ delivery will not be addressed, it can be
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regarded as a potential implication of HKU’s iGEM project.
</body>
</body>
</html>
</html>

Revision as of 09:54, 23 September 2012

Team:HKU Hong Kong - 2012

Team:HKU HK

From 2011.igem.org