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| <div id="media">{{:Team:Shenzhen/Temp/media_notebook.htm}}</div> | | <div id="media">{{:Team:Shenzhen/Temp/media_notebook.htm}}</div> |
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- | <div id="intro"> | + | <div id="intro">[[File:yao.028-001.jpg]] |
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| <div class="context"> | | <div class="context"> |
- | <h5>Context 1</h5> | + | <h5>Jounal</h5> |
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- | <UL>
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- | <LI>March 12th, 2012
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- | <P>Events:</P>
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- | <P>March 12th. The first iGEM meeting was a very serious one, and there were only 5 members: Kang Chen Zhang Ou and Gong ,respectively.</P>
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- | <P>We decided to build a list about the whole previous iGEM projects and divided it into five parts: America for Kang and Chen, Europe for Zhang and Ou, Asia for Gong. All of us were in charge of scanning the projects, summarized them and gave the other members a brief description. Each one for one minute.</P>
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- | <P>Contributors:</P>
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- | <P>Kang Kang, Yu Chen, Junjie Zhang, Min Ou and Jianhui Gong</P></LI></UL>
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- | <UL>
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- | <LI>March 15th – April 13th, 2012
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- | <P>Events:</P>
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- | <P>Though a recruitment talk with the other classmate in BGI, nearly 20 students and two instructors became members of us. We established a team consisted of eight schools—SCUT, SCNU, SCU, UESTC, WHU, HUST, SEU, UST.</P>
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- | <P>We continued to sum up the projects from 2008 to 2011, and in the meanwhile, we separated the whole into more parts and assigned to the other members.</P>
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- | <P>Finally, we finished the summary. </P>
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- | <P>And we also discussed what we should do, we originally put up with 4 schemes: Schrodinger’s cat—randomly producing 0 and 1; Density sensing application--based on the result of JIandong Wang’s research; Christmas tree—sparks different colors ceaselessly; Yeast artificial organelle—transform mitochondria into a biofactory. The former 3 projects were gave up due to the similarity to the previous iGEM projects. We lay down our consideration on Yeast artificial organelle.</P>
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- | <P>Chen Yu search more articles about mitochondria transgene and mitochondrial signaling pathways he can and pack it as a file of endnote.</P>
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- | <P>We clarify our projects as a combination of five modules: NAD+/NADH Sensor, self-killer, post-invader, sel-control transporter and artemisinin producer.</P>
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- | <P>We divided our group into five parts according to the modules and select two members of each modules to make up two new squads—modeling construction and lab experiments.</P>
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- | <P>Contributors:</P>
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- | <P>All members</P></LI></UL>
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| <UL> | | <UL> |
| <LI>April 14th – April 20th, 2012 | | <LI>April 14th – April 20th, 2012 |
| <P>Events:</P> | | <P>Events:</P> |
- | <P>For module of suicide:</P>
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| <P>Originally, we simply want our yeast cell die in four different ways,two ugly: various toxicity and membrane-dissolving, two graceful: apoptosis and autophagy.</P> | | <P>Originally, we simply want our yeast cell die in four different ways,two ugly: various toxicity and membrane-dissolving, two graceful: apoptosis and autophagy.</P> |
| <P>For suicide, we put up with the idea that we let mitochondria to be the mediate between host cell death and mitochondrial dysfunction.</P> | | <P>For suicide, we put up with the idea that we let mitochondria to be the mediate between host cell death and mitochondrial dysfunction.</P> |
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| <LI>May 5th – May 11th, 2012 | | <LI>May 5th – May 11th, 2012 |
| <P>Events:</P> | | <P>Events:</P> |
- | <P>Try to find any peptide from mitochondrial matrix to intermembrane space or to outer membrane or even cytoplasm. But this fails. So based on the peptide sequence from mt matrix to inner membrane, we try to find out if there are any material can act like GFP when it show flurorescence, it can releast H2O2, or any material that can release H2O2, so that we can use the promoter can sense H2O2[4].</P> | + | <P>Try to find any peptide from mitochondrial matrix to intermembrane space or to outer membrane or even cytoplasm. But this fails. So based on the peptide sequence from mt matrix to inner membrane, we try to find out if there are any material can act like GFP when it show flurorescence, it can releast H2O2, or any material that can release H2O2, so that we can use the promoter can sense H2O2.</P> |
| <P>Contributors:</P> | | <P>Contributors:</P> |
| <P>Qiwu XU Yu Chen, Kang Kang, Yan Huang , Senwei Tang, Jianhui Gong</P></LI></UL> | | <P>Qiwu XU Yu Chen, Kang Kang, Yan Huang , Senwei Tang, Jianhui Gong</P></LI></UL> |
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| <P> 2.3.2Holin?? </P> | | <P> 2.3.2Holin?? </P> |
| <P> 2.4How nucleus sense signal and produce holin? </P> | | <P> 2.4How nucleus sense signal and produce holin? </P> |
- | <P> 2.4.1Retrograde signaling RTG pathway from mt to nucleus. [5] </P> | + | <P> 2.4.1Retrograde signaling RTG pathway from mt to nucleus. </P> |
| <P>Contributors:</P> | | <P>Contributors:</P> |
| <P>Jianhui Gong</P></LI></UL> | | <P>Jianhui Gong</P></LI></UL> |
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| <LI> | | <LI> |
| <P>Contributors:</P> | | <P>Contributors:</P> |
- | <P>Qiwu Xu, Yang Deng, Jianhui Gong </P> | + | <P>Qiwu Xu, Yang Deng, Jianhui Gong </P></li></ul> |
- | <P style="TEXT-INDENT: -18pt; MARGIN-LEFT: 36pt; mso-char-indent-count: 0; mso-list: l0 level1 lfo1" class=MsoListParagraph><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; mso-bidi-font-size: 10.5pt; mso-fareast-font-family: 'Times New Roman'" lang=EN-US><SPAN style="mso-list: Ignore">1.<SPAN style="FONT: 7pt 'Times New Roman'"> </SPAN></SPAN></SPAN><SPAN lang=EN-US><A href="http://www.genome.jp/kegg-bin/show_pathway?map04210"><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; mso-bidi-font-size: 10.5pt">http://www.genome.jp/kegg-bin/show_pathway?map04210</SPAN></A></SPAN><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; mso-bidi-font-size: 10.5pt" lang=EN-US><o:p></o:p></SPAN></P>
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- | <P style="TEXT-INDENT: -18pt; MARGIN-LEFT: 36pt; mso-char-indent-count: 0; mso-list: l0 level1 lfo1" class=MsoListParagraph><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; mso-bidi-font-size: 10.5pt; mso-fareast-font-family: 'Times New Roman'" lang=EN-US><SPAN style="mso-list: Ignore">2.<SPAN style="FONT: 7pt 'Times New Roman'"> </SPAN></SPAN></SPAN><SPAN lang=EN-US><A href="http://www.genome.jp/kegg-bin/show_pathway?hsa04115"><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; mso-bidi-font-size: 10.5pt">http://www.genome.jp/kegg-bin/show_pathway?hsa04115</SPAN></A></SPAN><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; mso-bidi-font-size: 10.5pt" lang=EN-US><o:p></o:p></SPAN></P>
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- | <P style="TEXT-INDENT: -18pt; MARGIN-LEFT: 36pt; mso-char-indent-count: 0; mso-list: l0 level1 lfo1" class=MsoListParagraph><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; mso-bidi-font-size: 10.5pt; mso-fareast-font-family: 'Times New Roman'" lang=EN-US><SPAN style="mso-list: Ignore">3.<SPAN style="FONT: 7pt 'Times New Roman'"> </SPAN></SPAN></SPAN><SPAN lang=EN-US><A href="http://www.genome.jp/dbget-bin/www_bget?cgr:CAGL0I01408g"><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; mso-bidi-font-size: 10.5pt">http://www.genome.jp/dbget-bin/www_bget?cgr:CAGL0I01408g</SPAN></A></SPAN></P>
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- | <LI>
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- | <P style="TEXT-INDENT: -18pt; MARGIN-LEFT: 36pt; mso-char-indent-count: 0; mso-list: l0 level1 lfo1" class=MsoListParagraph><SPAN lang=EN-US>4. Prindle, A. et al. <SPAN style="FONT-FAMILY: 'Times New Roman','serif'; FONT-SIZE: 10.5pt; mso-fareast-font-family: 宋体; mso-fareast-theme-font: minor-fareast; mso-ansi-language: EN-US; mso-fareast-language: ZH-CN; mso-bidi-language: AR-SA" lang=EN-US>A sensing array of radically coupled genetic ‘biopixels’. <SPAN style="mso-font-kerning: 0pt">Nature. 2011;481:39-44.</SPAN></SPAN></SPAN></P>
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- | <LI>
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- | <P style="TEXT-INDENT: -18pt; MARGIN-LEFT: 36pt; mso-char-indent-count: 0; mso-list: l0 level1 lfo1" class=MsoListParagraph><SPAN lang=EN-US><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; FONT-SIZE: 10.5pt; mso-fareast-font-family: 宋体; mso-fareast-theme-font: minor-fareast; mso-ansi-language: EN-US; mso-fareast-language: ZH-CN; mso-bidi-language: AR-SA" lang=EN-US><SPAN style="mso-font-kerning: 0pt"><FONT size=3>5. <SPAN style="FONT-FAMILY: 'Times New Roman','serif'; mso-bidi-font-size: 10.5pt; mso-font-kerning: 0pt" lang=EN-US>Liu, Z. Butow, R. A. Mitochondrial retrograde signaling. Annu Rev Genet. 2006;40:159-85.</SPAN></FONT></SPAN></SPAN></SPAN></P>
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- | <P style="TEXT-INDENT: -18pt; MARGIN-LEFT: 36pt; mso-char-indent-count: 0; mso-list: l0 level1 lfo1" class=MsoListParagraph><SPAN lang=EN-US><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; FONT-SIZE: 10.5pt; mso-fareast-font-family: 宋体; mso-fareast-theme-font: minor-fareast; mso-ansi-language: EN-US; mso-fareast-language: ZH-CN; mso-bidi-language: AR-SA" lang=EN-US><SPAN style="mso-font-kerning: 0pt"><FONT size=3><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; mso-bidi-font-size: 10.5pt; mso-font-kerning: 0pt" lang=EN-US>6. Shi, Y. Sun, J.Current advance in the topological structure and function of holin encoded by bacteriophage lambda. Wei Sheng Wu Xue Bao. 2012 ;52:141-5.</SPAN></FONT></SPAN></SPAN></SPAN></P>
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- | <LI>
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- | <P style="TEXT-INDENT: -18pt; MARGIN-LEFT: 36pt; mso-char-indent-count: 0; mso-list: l0 level1 lfo1" class=MsoListParagraph><SPAN lang=EN-US><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; FONT-SIZE: 10.5pt; mso-fareast-font-family: 宋体; mso-fareast-theme-font: minor-fareast; mso-ansi-language: EN-US; mso-fareast-language: ZH-CN; mso-bidi-language: AR-SA" lang=EN-US><SPAN style="mso-font-kerning: 0pt"><FONT size=3><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; mso-bidi-font-size: 10.5pt; mso-font-kerning: 0pt" lang=EN-US>7. Agu, C. A et al. Bacteriophage-encoded toxins: the lambda-holin protein causes caspase-independent non-apoptotic cell death of eukaryotic cells. Cell Microbiol. 2007:1753. Lipton, S. A.<BR></SPAN></FONT></SPAN></SPAN></SPAN></P>
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- | <P style="TEXT-INDENT: -18pt; MARGIN-LEFT: 36pt; mso-char-indent-count: 0; mso-list: l0 level1 lfo1" class=MsoListParagraph><SPAN lang=EN-US><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; FONT-SIZE: 10.5pt; mso-fareast-font-family: 宋体; mso-fareast-theme-font: minor-fareast; mso-ansi-language: EN-US; mso-fareast-language: ZH-CN; mso-bidi-language: AR-SA" lang=EN-US><SPAN style="mso-font-kerning: 0pt"><FONT size=3><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; mso-bidi-font-size: 10.5pt; mso-font-kerning: 0pt" lang=EN-US>8. Bossy-Wetzel, E. Dueling activities of AIF in cell death versus survival: DNA binding and redox activity. Cell. 2002;111:147-50.</SPAN></FONT></SPAN></SPAN></SPAN></P>
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- | <P style="TEXT-INDENT: -18pt; MARGIN-LEFT: 36pt; mso-char-indent-count: 0; mso-list: l0 level1 lfo1" class=MsoListParagraph><SPAN lang=EN-US><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; FONT-SIZE: 10.5pt; mso-fareast-font-family: 宋体; mso-fareast-theme-font: minor-fareast; mso-ansi-language: EN-US; mso-fareast-language: ZH-CN; mso-bidi-language: AR-SA" lang=EN-US><SPAN style="mso-font-kerning: 0pt"><FONT size=3><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; mso-bidi-font-size: 10.5pt; mso-font-kerning: 0pt" lang=EN-US>9. Buttner, S. Endonuclease G regulates budding yeast life and death. Mol Cell. 2007 ;25:233-46.</SPAN></FONT></SPAN></SPAN></SPAN></P>
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- | <P style="TEXT-INDENT: -18pt; MARGIN-LEFT: 36pt; mso-char-indent-count: 0; mso-list: l0 level1 lfo1" class=MsoListParagraph><SPAN lang=EN-US><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; FONT-SIZE: 10.5pt; mso-fareast-font-family: 宋体; mso-fareast-theme-font: minor-fareast; mso-ansi-language: EN-US; mso-fareast-language: ZH-CN; mso-bidi-language: AR-SA" lang=EN-US><SPAN style="mso-font-kerning: 0pt"><FONT size=3><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; mso-bidi-font-size: 10.5pt; mso-font-kerning: 0pt" lang=EN-US>10. Spencer, S. L. Sorger, P. K. Measuring and modeling apoptosis in single cells. Cell. 2011;144:926-39.</SPAN></FONT></SPAN></SPAN></SPAN></P>
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- | <P style="TEXT-INDENT: -18pt; MARGIN-LEFT: 36pt; mso-char-indent-count: 0; mso-list: l0 level1 lfo1" class=MsoListParagraph><SPAN lang=EN-US><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; FONT-SIZE: 10.5pt; mso-fareast-font-family: 宋体; mso-fareast-theme-font: minor-fareast; mso-ansi-language: EN-US; mso-fareast-language: ZH-CN; mso-bidi-language: AR-SA" lang=EN-US><SPAN style="mso-font-kerning: 0pt"><FONT size=3><SPAN style="FONT-FAMILY: 'Times New Roman','serif'; mso-bidi-font-size: 10.5pt; mso-font-kerning: 0pt" lang=EN-US>12. Pinkham, J. L. Dudley, A. M. Mason, T. L. T7 RNA polymerase-dependent expression of COXII in yeast mitochondria. Mol Cell Biol. 1994 ;14:4643-52.</SPAN></FONT></SPAN></SPAN></SPAN></P></LI></UL>
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| </div> | | </div> |
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| <div class="context"> | | <div class="context"> |
- | <h5>Context 2</h5> | + | <h5>References</h5> |
- | <ul><li> </li> | + | <ul><p>1. http://www.genome.jp/kegg-bin/show_pathway?map04210</p></ul> |
- | <li> </li>
| + | <ul><p>2. http://www.genome.jp/kegg-bin/show_pathway?hsa04115</p></ul> |
- | <li> </li> | + | <ul><p>3. http://www.genome.jp/dbget-bin/www_bget?cgr:CAGL0I01408g</p></ul> |
- | <li> </li> | + | </div> |
- | <li> </li> | + | |
- | </ul></div> | + | |
- | | + | |
| </div> | | </div> |
| {{:Team:Shenzhen/Temp/gallery.htm}} | | {{:Team:Shenzhen/Temp/gallery.htm}} |