Team:ZJU-China/models.htm
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- | <p align="justify">In this year’s project, we try to make reasonable design of riboscaffolds by ourselves. Due to the current experimental conditions, we could not know what exactly happens to our riboscaffolds in the cell. Its folding process, binding with proteins and ligand, and the allosteric transition are of interests, since these are considerations for a reasonable design. Luckily, we have simulation tools for molecular modeling which can provide hints about what may happen theoretically in the intracellular environment. Although molecular modeling is often considered as professional work in which knowledge of different disciplines such as biology, physics, chemistry, mathematics and computer science as well as previous experience all contribute to good results, our team is willing to take a step in this field and get preliminary results.</p> | + | <p align="justify">In this year’s project, we try to make <b class="orange">reasonable design</b> of riboscaffolds by ourselves. Due to the current experimental conditions, we could not know what exactly happens to our riboscaffolds in the cell. Its folding process, binding with proteins and ligand, and the allosteric transition are of interests, since these are considerations for a reasonable design. Luckily, we have <b class="orange">simulation tools</b> for molecular modeling which can provide hints about <b class="orange">what may happen theoretically in the intracellular environment</b>. Although molecular modeling is often considered as professional work in which knowledge of different disciplines such as biology, physics, chemistry, mathematics and computer science as well as previous experience all contribute to good results, our team is willing to take a step in this field and get preliminary results.</p> |
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- | <a target="brainFrame" href="https://2012.igem.org/Team:ZJU-China/model_s1_1.htm">1. RNA folding and 3D Structures</a> | + | <a target="brainFrame" href="https://2012.igem.org/Team:ZJU-China/model_s1_1.htm" style="text-decoration:none">1. RNA folding and 3D Structures</a> |
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- | <a target="brainFrame" href="https://2012.igem.org/Team:ZJU-China/model_s1_2.htm">2. Docking</a> | + | <a target="brainFrame" href="https://2012.igem.org/Team:ZJU-China/model_s1_2.htm" style="text-decoration:none">2. Docking</a> |
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- | <a target="brainFrame" href="https://2012.igem.org/Team:ZJU-China/model_s1_3.htm">3. Molecular Dynamics</a> | + | <a target="brainFrame" href="https://2012.igem.org/Team:ZJU-China/model_s1_3.htm" style="text-decoration:none">3. Molecular Dynamics</a> |
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- | <a target="brainFrame" href="https://2012.igem.org/Team:ZJU-China/model_s1_4.htm">4. References</a> | + | <a target="brainFrame" href="https://2012.igem.org/Team:ZJU-China/model_s1_4.htm" style="text-decoration:none">4. References</a> |
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- | <a target="brainFramei" href="https://2012.igem.org/Team:ZJU-China/model_s2_1.htm">1. Preparation</a> | + | <a target="brainFramei" href="https://2012.igem.org/Team:ZJU-China/model_s2_1.htm" style="text-decoration:none">1. Preparation</a> |
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- | <a target="brainFramei" href="https://2012.igem.org/Team:ZJU-China/model_s2_2.htm">2. A small scale simulation</a> | + | <a target="brainFramei" href="https://2012.igem.org/Team:ZJU-China/model_s2_2.htm" style="text-decoration:none">2. A small scale simulation</a> |
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- | <a target="brainFramei" href="https://2012.igem.org/Team:ZJU-China/model_s2_3.htm">3. A large scale simulation</a> | + | <a target="brainFramei" href="https://2012.igem.org/Team:ZJU-China/model_s2_3.htm" style="text-decoration:none">3. A large scale simulation</a> |
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- | <a target="brainFramei" href="https://2012.igem.org/Team:ZJU-China/model_s2_4.htm">4. Additional effects</a> | + | <a target="brainFramei" href="https://2012.igem.org/Team:ZJU-China/model_s2_4.htm" style="text-decoration:none">4. Additional effects</a> |
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