Team:ZJU-China/project.htm

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<p align="justify">&nbsp;</p>
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<p align="justify">In previous work, FA and FB are used to indicate the efficiency of riboscaffold. In order to further prove the function of riboscaffold, we plan to substitute FA, FB with functional enzymes or protein substrates like ferredoxin in hydrogen producing pathway respectively. </p>
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<p align="justify">&nbsp;</p>
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<a target="brainFrame" href="https://2012.igem.org/Team:ZJU-China/p_s3_0.htm">Overview</a>
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<p align="justify">Considering the availability of material and abundant parts distributed by iGEM, we search the 2012 kit plate1-5 to find optimal pathways. After a pre-selection, six pathways are on candidate list. For sake of experimental feasibility, we perform a further selection based on several caritas as follows:</p>
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<a target="brainFrame" href="https://2012.igem.org/Team:ZJU-China/p_s3_1.htm">1. Salicylate pathway</a>
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<p align="justify">1. Product is easy to detect and measure;</p>
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<p align="justify">&nbsp;</p>
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<p align="justify">2. Substrate is easy to get;</p>
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<a target="brainFrame" href="https://2012.igem.org/Team:ZJU-China/p_s3_2.htm">2. Pyocyanin pathway</a>
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<p align="justify">3. Product is beneficial to human;</p>
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<a target="brainFrame" href="https://2012.igem.org/Team:ZJU-China/p_s3_3.htm">3. Lycopene pathway</a>
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<p align="justify">4. The length of amino acid sequence of enzyme is optimal to be fusion protein;</p>
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<p align="justify">&nbsp;</p>
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<p align="justify">5. Two proteins involved in the basic pathway.</p>
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<a target="brainFrame" href="https://2012.igem.org/Team:ZJU-China/p_s3_4.htm">4. Holo-&alpha;-phycoerythrocyanin pathway</a>
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<p align="justify">&nbsp;</p>
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<p align="justify">Candidate list:</p>
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<a target="brainFrame" href="https://2012.igem.org/Team:ZJU-China/p_s3_5.htm">5. BPA degradation pathway</a>
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<h2>1. Salicylate pathway</h2>
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<p>(Group: iGEM2006_MIT)</p>
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<a target="brainFrame" href="https://2012.igem.org/Team:ZJU-China/p_s3_6.htm">6. IAM pathway</a>
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<img src="http://www.jiajunlu.com/igem/zju_iaa_1.jpg" width="600px" />
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<p align="justify">&nbsp;</p>
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<p align="justify">Assessment: </p>
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<p align="justify">The characterization method of gas chromatography is difficult to perform. First, what can be analyzed is methyl salicylate production, that is to say, another enzyme should be co-transformed to E.coli too, which will increase cell’s burden and reduce the ratio of successful co-transformation. Second, it is not convenient for us to borrow the relative machine.</p>
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<iframe src="" frameborder="0" name="brainFrame" width="100%" height="500px"> </iframe>  
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<p align="justify">&nbsp;</p>
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<h2>2. Pyocyanin pathway</h2>
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<p>(Group: iGEM2007_Glasgow)</p>
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<img src="http://www.jiajunlu.com/igem/zju_iaa_2.jpg" width="600px" />
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<p align="justify">Assessment: </p>
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<p align="justify">Through there are exactly two enzymes involved in this pathway, but the source of material, phenazine-1-carboxylic acid (PCA), is not mentioned. And it not easy to measure the amount of pyocyanin. </p>
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<h2>3. Lycopene pathway</h2>
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<p>(Group: iGEM2009_Cambridge) </p>
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<img src="http://www.jiajunlu.com/igem/zju_iaa_3.jpg" width="600px" />
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<p align="justify">Assessment: </p>
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<p align="justify">Lycopene is visible red and its substrate, FPP, is colorless. So measurement is quite feasible. But there are at least three proteins in this pathway, which will increase the burden of cell. But in future work, we could have a try.</p>
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<h2>4. Holo-&alpha;-phycoerythrocyanin pathway</h2>
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<p>(Group: iGEM2004_UTAustin)</p>
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<img src="http://www.jiajunlu.com/igem/zju_iaa_4.jpg" width="600px" />
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<p align="justify">Assessment: </p>
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<p align="justify">Heme is metabolic product of E.coli and Holo-α-phycoerythrocyanin is blue. But at least 5 proteins should be expressed in E.coli.</p>
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<h2>5. BPA degradation pathway</h2>
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<p>(Group: iGEM2008_University_of_Alberta)</p>
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<p align="justify">Assessment: </p>
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<p align="justify">Bisphenol A is degraded by BisdA and BisdB. But BPA is toxic to cells.</p>
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<h2>6. IAM pathway</h2>
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<p>(Group: iGEM2011_Imperial)</p>
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<img src="https://static.igem.org/mediawiki/2012/c/c3/ZJU_IAA_Screen_Shot_2012-09-27.png" width="600px" />
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<p align="justify">Assessment: </p>
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<p align="justify">Five pathways described above all have some drawbacks, finally, only one pathway left, IAM pathway. The two-step IAM pathway generates indole-3-acetic acid (IAA) from the precursor tryptophan. IAA tryptophan monooxygenase (IaaM) catalyses the oxidative carboxylation of L-tryptophan to indole-3-acetamide, which is hydrolysed to IAA and ammonia by indoleacetamide hydrolase (IaaH). </p>
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<p align="justify">Final Decision: </p>
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<img src="https://static.igem.org/mediawiki/2012/4/4f/ZJU_S3_candidate01.png" width="600px" />
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Revision as of 20:31, 26 September 2012

PROJECT

01 ABSTRACT

02 BACKGROUND

03 S0: BASIC RNA SCAFFOLD

04 S1: RIBOSCAFFOLD

05 S2: SCAFFOLD LIBRARY

06 S3: BIOSYNTHESIS OF IAA

07 PARTS

08 RESULTS

09 PERSPECTIVES