Team:LMU-Munich

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<td><span style="text-align:justify">Apoptosis Biobrick Library: Possibilities of utilizing apoptosis as a clean and effective selection mark for manipulation in eucaryotic systems.  
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<td><span style="text-align:justify"></html>Apoptosis Biobrick Library: Possibilities of utilizing apoptosis as a clean and effective selection mark for manipulation in eucaryotic systems.  
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Serves the improving of gen-expression in cell lines and the curtailing of cloning processure for large-scale screening. <a href="1/">more </a></span></td>
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Serves the improving of gen-expression in cell lines and the curtailing of cloning processure for large-scale screening. [[Team:LMU-Munich/Apotosis|more]]<html></span></td>
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<td>Engineering an artificial pathway in a bacterial microcompartment to produce functional azobenzene-compounds, such as protein crosslinkers, tethered or soluble enzyme-modulators or optimized
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<td></html>Engineering an artificial pathway in a bacterial microcompartment to produce functional azobenzene-compounds, such as protein crosslinkers, tethered or soluble enzyme-modulators or optimized
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ligands for other molecular applications.<br />
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ligands for other molecular applications. [[Team:LMU-Munich/Pathway|more]]<html></td>
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<a href="2/">more</a></td>
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Revision as of 11:45, 3 August 2010



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Apoptosis Biobrick Library: Possibilities of utilizing apoptosis as a clean and effective selection mark for manipulation in eucaryotic systems. Serves the improving of gen-expression in cell lines and the curtailing of cloning processure for large-scale screening. more

  
Engineering an artificial pathway in a bacterial microcompartment to produce functional azobenzene-compounds, such as protein crosslinkers, tethered or soluble enzyme-modulators or optimized ligands for other molecular applications. more

 
 

 



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