Team:Peking/HumanPractice/Outreach/Collaboration

From 2012.igem.org

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  <h3 id="title3">Collaboration with Other iGEM Teams</h3>
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Another important part of iGEM is helping other teams through communication and collaboration. <a href="/Team:SJTU-BioX-Shanghai">Team SJTU-BioX-Shanghai</a> found that we utilized ribozymes last year to control the expression of VioABDE gene, and thereby requested biobricks of <a href="http://partsregistry.org/wiki/index.php?title=Part:BBa_K598019"> BBa_K598019</a> and <a href="http://partsregistry.org/wiki/index.php?title=Part:BBa_K598020">BBa_K598020</a> to incorporate in their "Membrane Magic" project. We shared the DNA materials with them.</p>
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  <img src="/wiki/images/b/b2/Peking2012_HP_SJTU_logo.jpg" alt="SJTU_iGEM" style="width:200px;">
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  <p class="description" style="width:150px;text-align:center;">SJTU_iGEM</p>
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<p class="description">Figure 2.SJTU_iGEM Team</p>
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  <img src="http://partsregistry.org/wiki/images/3/36/PekingR_ZZR2.JPG" alt="BBa_K598019" style="width:200px;">
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   <img src="http://partsregistry.org/wiki/images/3/36/PekingR_ZZR2.JPG" alt="BBa_K598019" style="width:330px">
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  <p class="description" style="width:150px;text-align:center;">BBa_K598019</p>
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  <p class="description">Figure 3. BBa_K598019</p>
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Another important part of iGEM is helping other teams through communication and collaboration. <a href="/Team:SJTU-BioX-Shanghai">Team SJTU-BioX-Shanghai</a> found that we utilized ribozymes last year to control the expression of VioABDE gene, and thereby requested biobricks of <a href="http://partsregistry.org/wiki/index.php?title=Part:BBa_K598019"> BBa_K598019</a> and <a href="http://partsregistry.org/wiki/index.php?title=Part:BBa_K598020">BBa_K598020</a> to incorporate in their "Membrane Magic" project. We shared the DNA materials with them.
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  <p>We also collaborated with <a href="/Team:Tianjin">Team Tianjin</a> by sharing ideas, protocols and information. Later, we helped them to characterize their biobricks <a href="http://partsregistry.org/wiki/index.php?title=Part:BBa_K821001"> BBa_K821001</a> and <a href="http://partsregistry.org/wiki/index.php?title=Part:BBa_K821002"> BBa_K821002</a> using fluorescence stereomicroscope. </p>
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<img src="https://static.igem.org/mediawiki/igem.org/5/56/Peking2012_HS_Tinjin.png" alt="TJU_iGEM" style="width:330px">
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<p class="description">Figure 4. TJU_iGEM Team</p>
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  <p>We also collaborated with <a href="/Team:Tianjin">Team Tianjin</a> by sharing ideas, protocols and information. Later, we helped them to characterize their biobricks <a href="http://partsregistry.org/wiki/index.php?title=Part:BBa_K821001"> BBa_K821001</a> and <a href="http://partsregistry.org/wiki/index.php?title=Part:BBa_K821002"> BBa_K821002</a> using fluorescence stereomicroscope.
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  <p>Also we established a positive, cooperative, and steady relation with <a href="/Team:OUC-China">OUC-China</a>. Peking iGEM and OUC iGEM helped each other a lot this summer. We helped them to build stochastic model and gave some important advice about their program, which provides guidance for the experimental implementation.  Reciprocally, they shared DNA material of agarase, an enzyme that degrades agar, with us, which is very useful for our 3D bio-printing.</p>
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<img src="https://static.igem.org/mediawiki/igem.org/6/64/Peking2012_HS_OUC.jpg" alt="OUC_iGEM" style="width:200px">
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<p class="description">Figure 5. OUC_iGEM Team</p>
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<p class="description">Figure 5. OUC_iGEM Team</p>
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<p>Besides, we also shared DNA materials of <a href="http://partsregistry.org/wiki/index.php?title=Part:BBa_K598002"> BBa_K598002</a> with <a href="/Team:SYSU-China">Team SYSU-China</a>. They exploited this digital-like and plug-in toggle switch to implement sequential logic processing in their gene circuit. </p>
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Also we established a positive, cooperative, and steady relation with <a href="/Team:OUC-China">OUC-China</a>. Peking iGEM and OUC iGEM helped each other a lot this summer. We helped them to build stochastic model and gave some important advice about their program, which provides guidance for the experimental implementation.  Reciprocally, they shared DNA material of agarase, an enzyme that degrades agar, with us, which is very useful for our 3D bio-printing.
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<img src="/wiki/images/d/dc/Peking2012_HS_SYSU.jpg" alt="SYSU_iGEM" style="width:180px">
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<p class="description">Figure 6. SYSU_iGEM Team</p>
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  <img src="/wiki/images/d/dc/Peking2012_HS_SYSU.jpg" alt="SYSU_iGEM" style="width:200px;">
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  <p class="description">SYSU_iGEM Team</p>
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  <img src="http://partsregistry.org/wiki/images/c/c0/Fluorescence_images_of_bistable_switch.png" alt="Bistable" style="width:400px">
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  <p class="description">Fluorescence images of bistable switch.</p>
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Besides, we also shared DNA materials of <a href="http://partsregistry.org/wiki/index.php?title=Part:BBa_K598002"> BBa_K598002</a> with <a href="/Team:SYSU-China">Team SYSU-China</a>. They exploited this digital-like and plug-in toggle switch to implement sequential logic processing in their gene circuit.
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<img src="http://partsregistry.org/wiki/images/c/c0/Fluorescence_images_of_bistable_switch.png" alt="Bistable" style="width:400px">
 
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<p class="description">Figure 7. Fluorescence images of bistable switch.</p>
 
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Revision as of 06:18, 25 September 2012

Summary

This summer, Peking 2012 iGEM team benefitted a lot from the collaboration with Prof. YANG Yi and other iGEM teams. By paying reciprocal visits with Prof. Yang, we establish collaboration with his lab. By help some other teams with their contests, we built lifelong friendship with team members across the world.

Collaboration with Prof. YANG Yi's Lab

Greatly inspired by the elaborate design of an ultrasensitive, light-controlled transactivator Gal4-VVD developed by Prof. Yang's lab (X. WANG et al., 2012, Nature Methods), Peking 2012 iGEM team intended to design a light sensor working in prokaryotes, and so invited Prof. YANG Yi from East China University of Science and Technology to visit Peking University and to communicate with team members. Later, Peking 2012 team members also made another visit to Prof. YANG Yi.

The publication of an ultra photosensitive, genetically encoded activator, Gal4-VVD, which is rationally designed to enjoy a high spatiotemporal specificity and efficiency, greatly enlightened Peking 2012 iGEM team on its primitive aim for programming cells to function and communicate through light.

By sharing a mutual concern of optogenetics for synthetic biological application, Prof. YANG Yi from East China University of Science and Technology and our team paid reciprocal visits to each other. During Prof. Yang’s visit to Peking University on 21st April, we shared a common view on the basic design of a LexA-VVD genetic regulator and reached a consensus for further cooperation.

Prof.Yang Yi

Figure 1. Professor YANG Yi

Two months later, deputy team leader ZHOU Wenyuan and another team member YAN Jiawei visited Yang's lab in Shanghai and Prof. Yang decided to instruct Peking iGEM as the TEAM INSTRUCTOR. This very cooperation is not only beneficial to both sides, but also provides an opportunity for future collaborations.

Collaboration with Other iGEM Teams

SJTU_iGEM

SJTU_iGEM

BBa_K598019

BBa_K598019

Another important part of iGEM is helping other teams through communication and collaboration. Team SJTU-BioX-Shanghai found that we utilized ribozymes last year to control the expression of VioABDE gene, and thereby requested biobricks of BBa_K598019 and BBa_K598020 to incorporate in their "Membrane Magic" project. We shared the DNA materials with them.

TJU_iGEM

TJU_iGEM Team

We also collaborated with Team Tianjin by sharing ideas, protocols and information. Later, we helped them to characterize their biobricks BBa_K821001 and BBa_K821002 using fluorescence stereomicroscope.

OUC_iGEM

OUC_iGEM Team

OUC_iGEM Result

Also we established a positive, cooperative, and steady relation with OUC-China. Peking iGEM and OUC iGEM helped each other a lot this summer. We helped them to build stochastic model and gave some important advice about their program, which provides guidance for the experimental implementation. Reciprocally, they shared DNA material of agarase, an enzyme that degrades agar, with us, which is very useful for our 3D bio-printing.

SYSU_iGEM

SYSU_iGEM Team

Bistable

Fluorescence images of bistable switch.

Besides, we also shared DNA materials of BBa_K598002 with Team SYSU-China. They exploited this digital-like and plug-in toggle switch to implement sequential logic processing in their gene circuit.

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