Difference between revisions of "Team:AHUT China"

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<h1> Welcome to iGEM 2018!Ahut_China</h1>
 
<p>Your team has been approved and you are ready to start the iGEM season! </p>
 
 
 
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<h3> Ahut_China 2018 Project Description </h3>
 
<h3> Ahut_China 2018 Project Description </h3>
<p>Due to the serious impact on the world environment caused by the increasing greenhouse gases, it is crucial for us to deal with the greenhouse gases effectively. Given to the fact that the traditional collection technique of CO2 is still at its early stage and characterized by its high consumption and low efficiency: thus, this technique hasn’t been fully developed yet. In our project, through the mutation of human carbonic anhydrase gene loci, the protein molecules expressed by it were simulated by computer to obtain human carbonic anhydrase (CA-2) with high thermal stability, and we can realize the efficient collection of CO2 after CA-2 has been guided into the E. coil cell..</p>
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<p>Due to the serious impact on the world environment caused by the increasing greenhouse gases, it is crucial for us to deal with the greenhouse gases effectively. Given to the fact that the traditional collection technique of carbon dioxide is still at its early stage and characterized by its high consumption and low efficiency, thus, this technique hasn’t been fully developed yet. In our project, through the mutation of carbonic anhydrase gene, the protein molecules expressed by it were simulated by computer to obtain carbonic anhydrase (CA-2) with high thermal stability, and we can realize the efficient collection of carbon dioxide after CA-2 has been transformed into the E. coil.</p>
  
  

Revision as of 09:12, 5 July 2018

Ahut_China 2018 Project Description

Due to the serious impact on the world environment caused by the increasing greenhouse gases, it is crucial for us to deal with the greenhouse gases effectively. Given to the fact that the traditional collection technique of carbon dioxide is still at its early stage and characterized by its high consumption and low efficiency, thus, this technique hasn’t been fully developed yet. In our project, through the mutation of carbonic anhydrase gene, the protein molecules expressed by it were simulated by computer to obtain carbonic anhydrase (CA-2) with high thermal stability, and we can realize the efficient collection of carbon dioxide after CA-2 has been transformed into the E. coil.