Universeson (Talk | contribs) |
Universeson (Talk | contribs) |
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<p>The natural siderophore producing is affected by the concentration of iron ions. Through the regulation mechanism of Fur, when the iron ion concentration is high, the siderophore gene is inhibited, and thus the siderophore is no longer produced. Therefore, we need to modify the natural siderophore system to initiate the expression of the siderophore gene when the quorum sensing signal molecule HSL is present.</p> | <p>The natural siderophore producing is affected by the concentration of iron ions. Through the regulation mechanism of Fur, when the iron ion concentration is high, the siderophore gene is inhibited, and thus the siderophore is no longer produced. Therefore, we need to modify the natural siderophore system to initiate the expression of the siderophore gene when the quorum sensing signal molecule HSL is present.</p> | ||
<p>Chorismic acid, an aromatic amino acid precursor, is converted to 2,3-dihydroxybenzoic acid (DHB) by a series of enzymes, EntA, EntB and EntC. An amide linkage of DHB to L-serine is then catalyzed by EntD, EntE, EntF and EntB. Three molecules of the DHB-Ser formed undergo intermolecular cyclization, yielding enterobactin.</p> | <p>Chorismic acid, an aromatic amino acid precursor, is converted to 2,3-dihydroxybenzoic acid (DHB) by a series of enzymes, EntA, EntB and EntC. An amide linkage of DHB to L-serine is then catalyzed by EntD, EntE, EntF and EntB. Three molecules of the DHB-Ser formed undergo intermolecular cyclization, yielding enterobactin.</p> | ||
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+ | <figure class="makeresponsive floatleft" style="width: 50%;"> | ||
+ | <img src="https://static.igem.org/mediawiki/2018/2/22/T--ECUST--rustremoverf2.png" | ||
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+ | </figure> | ||
+ | <figure class="makeresponsive floatleft" style="width: 50%;"> | ||
+ | <img src="https://static.igem.org/mediawiki/2018/f/f6/T--ECUST--rustremoverf1.png" | ||
+ | class="zoom"> | ||
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+ | </figure> | ||
</div> | </div> |
Revision as of 17:38, 17 October 2018