Team:Penn/MaGellinMotivation
From 2013.igem.org
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- | <b>TAL Effector Systems.</b> The TALE is a more site specific and easily customizable DNA-binding domain than the zinc finger, which has increasingly been used in synthetic biology DNA targeting experiments. As we worked on our project this summer and fall, we were thrilled to see other labs thinking about epigenetic engineering. In the past few months, there has been published work on TALEs fused with histone methylases, histone demethylases, and DNA demethylases (Konermann 2013, Mendenhall 2013, Maedner 2013). The contribution of our TALE DNA methylase completes this initial suite of tools for epigenetic engineering. | + | <h4><b>TAL Effector Systems.</b></h4> The TALE is a more site specific and easily customizable DNA-binding domain than the zinc finger, which has increasingly been used in synthetic biology DNA targeting experiments. As we worked on our project this summer and fall, we were thrilled to see other labs thinking about epigenetic engineering. In the past few months, there has been published work on TALEs fused with histone methylases, histone demethylases, and DNA demethylases (Konermann 2013, Mendenhall 2013, Maedner 2013). The contribution of our TALE DNA methylase completes this initial suite of tools for epigenetic engineering. |
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- | <b>Slowed Progress.</b>DNA binding proteins that are more modular and specific to their target sequence than zinc-fingers, such as the TALE and CRISPR-Cas systems, have gained widespread attention for their utility in genetic studies, but they have not been leveraged for improved targeted methylation. Screening new methyltransferase fusions for activity and specificity is difficult and expensive, which could hamper protein-engineering efforts (Gaj 2013). So, we developed a new methylation assay, MaGellin, to accelerate development and cut costs. Then, we used MaGellin to prove the efficacy of the first TALE-methylase fusion. | + | <h4><b>Slowed Progress.</b></h4>DNA binding proteins that are more modular and specific to their target sequence than zinc-fingers, such as the TALE and CRISPR-Cas systems, have gained widespread attention for their utility in genetic studies, but they have not been leveraged for improved targeted methylation. Screening new methyltransferase fusions for activity and specificity is difficult and expensive, which could hamper protein-engineering efforts (Gaj 2013). So, we developed a new methylation assay, MaGellin, to accelerate development and cut costs. Then, we used MaGellin to prove the efficacy of the first TALE-methylase fusion. |
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- | <b>Noise Problem.</b>An additional challenge that makes the design and characterization of proteins which methylate specific DNA sequences is the signal:noise ratio in mammalian cells. With a large amount of CpG sites naturally methylated in mammalian cells, it is difficult to differentiate protein activity from background noise. However, CpG methylation is completely orthogonal to E.coli so we developed our methylation assay, MaGellin, in this bacterial chassis. | + | <h4><b>Noise Problem.</b></h4>An additional challenge that makes the design and characterization of proteins which methylate specific DNA sequences is the signal:noise ratio in mammalian cells. With a large amount of CpG sites naturally methylated in mammalian cells, it is difficult to differentiate protein activity from background noise. However, CpG methylation is completely orthogonal to E.coli so we developed our methylation assay, MaGellin, in this bacterial chassis. |
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- | <b>Lack of a Standarized Assay.</b>The most pressing challenge, however, was the lack of a standardized assay for the activity of site-specific methylases that was inexpensive, fast, robust, and easy to use. So, the first element of our project and our most important contribution to the community was the development of the MaGellin assay. | + | <h4><b>Lack of a Standarized Assay.</b></h4>The most pressing challenge, however, was the lack of a standardized assay for the activity of site-specific methylases that was inexpensive, fast, robust, and easy to use. So, the first element of our project and our most important contribution to the community was the development of the MaGellin assay. |
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Revision as of 19:51, 28 October 2013
Background Information
For a detailed, graphical explanation of the MaGellin work flow, please download the MaGellin Workflow Specifications Sheet, which includes all of the steps in the MaGellin workflow.
Existing Technologies
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