Difference between revisions of "Team:ShanghaitechChina/Proof"

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   <h1 align="center">Solar Hunter in a Nutshell</h1>
 
   <h1 align="center">Solar Hunter in a Nutshell</h1>
  Solar Hunter is an artificial hydrogen production system comprising biofilm-anchored semiconductor nanorods (NRs) which efficiently convert photons to electrons, and engineered strain expressing [FeFe] hydrogenase that can efficiently catalyze Hydrogen production upon receiving the electrons donated by NRs.   The success of this integrative hydrogen-producing system relies on robust construction and functional characterization of each part separately.   We have proved that we successfully constructed and characterized our components, as revealed below.     For the full demonstration of the system with all the components, please refer to <b><a href="https://2016.igem.org/wiki/index.php?title=Team:ShanghaitechChina/Demonstration">Demonstration of our Work</a></b>
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  Solar Hunter is an artificial hydrogen-producing system comprising biofilm-anchored semiconductor nanorods (NRs) which efficiently convert photons to electrons, and engineered strain expressing [FeFe] hydrogenase that can efficiently catalyze Hydrogen production upon receiving the electrons donated by NRs. The success of this integrative hydrogen-producing system relies on robust construction and functional characterization of each part separately. We have proved that we successfully constructed and characterized our components, as revealed below. For the full demonstration of the system with all the components, please refer to <b><a href="https://2016.igem.org/wiki/index.php?title=Team:ShanghaitechChina/Demonstration">Demonstration of our Work</a></b>
  
 
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   <h1 align="center">Major Achievements in Constructing Our Device</h1>
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   <h1 align="center">Major Achievements in Construction of Our Device</h1>
 
   
 
   
  1. Successful production and characterization of engineered Biofilms, demonstrating that engineered biofilms composed of CsgA fused protein allowed firm binding of semiconductor nanomaterials. <p></p>
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  1. Successful production and characterization of engineered biofilms and successful demonstration that engineered biofilms composed of CsgA-histagged fusion protein allowed firm binding of semiconductor nanomaterials. <p></p>
 
Base on this conception, we constructed two major device in our project and tested their function:<p></p>
 
Base on this conception, we constructed two major device in our project and tested their function:<p></p>
 
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Please refer to <a href="https://2016.igem.org/Team:ShanghaitechChina/Biofilm"><b>Engineered Biofilms</b></a> for details of the successful construction and characterization of engineered biofilms
 
Please refer to <a href="https://2016.igem.org/Team:ShanghaitechChina/Biofilm"><b>Engineered Biofilms</b></a> for details of the successful construction and characterization of engineered biofilms
 
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  2.Next question is how to ensure normal enzyme activity by making these four enzymes can express simultaneously under a moderate level? So we built the device based on Acembl system and we make successful integration of [FeFe]-hydrogenase gene clusters from Clostridium acetobutylicum into one single plasmid to allow reliable expression.  <p></p> Please refer to <b><a href="https://2016.igem.org/Team:ShanghaitechChina/Hydrogen">Hydrogenase Session</a></b> for more details. </p>   
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  2.Next question is how to ensure normal enzyme activity by expressing four enzymes simultaneously with a moderate level within one engineered strain. So we built the device based on Acembl system and we make successful integration of [FeFe]-hydrogenase gene clusters from Clostridium acetobutylicum into one single plasmid to allow reliable expression, as confirmed by gene sequence and successful protein expression revealed by SDS and Western Blot.  <p></p> Please refer to <b><a href="https://2016.igem.org/Team:ShanghaitechChina/Hydrogen">Hydrogenase Session</a></b> for more details. </p>   
  3.Finally, is our enzyme to be functional to make a precondition for our whole plan?  Here we can show you successful hydrogen production with freely-flowing CdS Nanorods  <p></p>
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  3.Finally, Do these enzymes possess normal catalytic properties before we fulfill and demonstrate the integrative idea ?  Here we can show you successful hydrogen production with freely-flowing CdS Nanorods  <p></p>
  
 
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Revision as of 18:18, 19 October 2016

igem2016:ShanghaiTech