Team:Heidelberg

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Stefan Kleinsorg, Thomas Uhlig
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<p align="justify">miRNAs were found to be key regulators in proliferation, differentiation, apoptosis, hematopoesis and oncogenesis. Different cell types have unique and dynamic miRNA expression profiles that could be used to discriminate between those cell types and even between cellular stages. The iGEM Team Heidelberg 2010 will create miRNA binding site patterns enabling the control of any target gene of choice according to the cellular miRNA expression profile.  Therefore, we will apply evolutionary methods for creating large miRNA binding site pattern libraries and we will develop two new and powerful methods for miRNA binding site pattern library screening. In parallel, computational modeling will be used for getting information on natural binding site pattern structure in order to enable rational design of complex binding site patterns recognizing certain cellular miRNA expression profiles in the future.</p>
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<div id="wrapperheadline">iGEM Heidelberg Mission 2010: miBricks</div><br><br>
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<div id="projectabstract">The key to successful gene therapy is integration of tissue specificity and fine-tuned target gene expression. The iGEM Team Heidelberg 2010 unlocks the world of synthetic microRNAs. We engineered a toolkit for standardized measurements of interactions between artificial miRNAs and their binding sites. Thus, the expression level of any gene of choice could be arbitrarily adjusted by employing the corresponding binding site design. To produce tissue specific miRNA gene shuttles, we developed an evolution-based method for synthesis of new adeno associated viruses. In the future, miBricks could open the doors to new Synthetic Biology based medical approaches. </div><br><br>
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Revision as of 00:49, 12 October 2010

iGEM Heidelberg Mission 2010: miBricks


The key to successful gene therapy is integration of tissue specificity and fine-tuned target gene expression. The iGEM Team Heidelberg 2010 unlocks the world of synthetic microRNAs. We engineered a toolkit for standardized measurements of interactions between artificial miRNAs and their binding sites. Thus, the expression level of any gene of choice could be arbitrarily adjusted by employing the corresponding binding site design. To produce tissue specific miRNA gene shuttles, we developed an evolution-based method for synthesis of new adeno associated viruses. In the future, miBricks could open the doors to new Synthetic Biology based medical approaches.


Please click a Button to get more information!