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首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >The molecular basis of selective DNA binding by the BRG1 AT-hook and bromodomain
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The molecular basis of selective DNA binding by the BRG1 AT-hook and bromodomain

机译:BRG1在钩钩和溴琼蛋白的选择性DNA结合的分子基础

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摘要

The ATP-dependent BAF chromatin remodeling complex plays a critical role in gene regulation by modulating chromatin architecture, and is frequently mutated in cancer. Indeed, subunits of the BAF complex are found to be mutated in > 20% of human tumors. The mechanism by which BAF properly navigates chromatin is not fully understood, but is thought to involve a multivalent network of histone and DNA contacts. We previously identified a composite domain in the BRG1 ATPase subunit that is capable of associating with both histones and DNA in a multivalent manner. Mapping the DNA binding pocket revealed that it contains several cancer mutations. Here, we utilize SELEX-seq to investigate the DNA specificity of this composite domain and NMR spectroscopy and molecular modelling to determine the structural basis of DNA binding. Finally, we demonstrate that cancer mutations in this domain alter the mode of DNA association.
机译:ATP依赖性BAF染色质重塑复合物通过调节染色质结构在基因调节中起重要作用,并且经常在癌症中突变。 实际上,发现BAF复合物的亚基被发现在> 20%的人类肿瘤中突变。 BAF正确导航染色质的机制尚不完全理解,但被认为涉及组蛋白和DNA接触的多价网络。 我们之前鉴定了BRG1 ATPase亚基中的复合结构域,其能够以多价方式与组蛋白和DNA相关联。 映射DNA结合口袋显示它含有几种癌症突变。 这里,我们利用Selex-SEQ研究该复合结构域和NMR光谱和分子模拟的DNA特异性,以确定DNA结合的结构基础。 最后,我们证明该结构域中的癌症突变改变了DNA关联的模式。

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