Difference between revisions of "Team:ShanghaitechChina/Hydrogen"

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         <h1 align="center">Motivation of Hydrogenase</h1>
 
         <h1 align="center">Motivation of Hydrogenase</h1>
           <center><img src="https://static.igem.org/mediawiki/2016/0/04/T--ShanghaitechChina--hrduogenase--fangcheng.extension.jpg" style="width:20%></center>
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           <center><img src="https://static.igem.org/mediawiki/2016/0/04/T--ShanghaitechChina--hrduogenase--fangcheng.extension.jpg" ></center>
         <p style="text-align:center"><b>Figure 1A</b> The reversible oxidation of molecular hydrogen.</p>
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         <p style="text-align:center"><b>Figure 1A</b> Hydrogenase is an enzyme that catalyses the reversible oxidation of molecular hydrogen (H2)</p>
        Hydrogenase is an enzyme that catalyses the reversible oxidation of molecular hydrogen (H2). (Figure 1) <p></p>
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             <img src="https://static.igem.org/mediawiki/parts/a/ac/Shanghaitech-hydrogenase-fig2.png" style="width:100%;">
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             <img src="https://static.igem.org/mediawiki/parts/a/ac/Shanghaitech-hydrogenase-fig2.png" style="width:30%;">
 
<figcaption >
 
<figcaption >
 
<p><b>Figure 1B</b> The inner structure of [FeFe]-hydrogensase.</p>
 
<p><b>Figure 1B</b> The inner structure of [FeFe]-hydrogensase.</p>
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The main functional catalytic group in [FeFe]-hhydrogenase is considered to be an iron-sulfur cluster domain with a di-iron center covalently linked to a dithiolate group. <p></p>
 
The main functional catalytic group in [FeFe]-hhydrogenase is considered to be an iron-sulfur cluster domain with a di-iron center covalently linked to a dithiolate group. <p></p>
  

Revision as of 07:54, 18 October 2016

igem2016:ShanghaiTech