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Single molecule fluorescence methodologies for investigating transcription factor binding kinetics to nucleosomes and DNA

机译:用于研究转录因子与核小体和DNA结合动力学的单分子荧光方法

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Site specific DNA binding complexes must bind their DNA target sites and then reside there for a sufficient amount of time for proper regulation of DNA processing including transcription, replication and DNA repair. In eukaryotes, the occupancy of DNA binding complexes at their target sites is regulated by chromatin structure and dynamics. Methodologies that probe both the binding and dissociation kinetics of DNA binding proteins with naked and nucleosomal DNA are essential for understanding the mechanisms by which these complexes function. Here, we describe single-molecule fluorescence methodologies for quantifying the binding and dissociation kinetics of transcription factors at a target site within DNA, nucleosomes and nucleosome arrays. This approach allowed for the unexpected observation that nucleosomes impact not only binding but also dissociation kinetics of transcription factors and is well-suited for the investigation of numerous DNA processing complexes that directly interact with DNA organized into chromatin. (C) 2014 Published by Elsevier Inc.
机译:位点特异性DNA结合复合物必须结合其DNA靶位点,然后在此处停留足够的时间,以适当调节DNA加工,包括转录,复制和DNA修复。在真核生物中,DNA结合复合物在其靶位点的占据受到染色质结构和动力学的调节。探测DNA结合蛋白与裸露和核小体DNA的结合和解离动力学的方法对于理解这些复合物的作用机理至关重要。在这里,我们描述了用于定量DNA,核小体和核小体阵列内目标位点上转录因子的结合和解离动力学的单分子荧光方法。这种方法可带来意想不到的观察结果,即核小体不仅影响结合,还影响转录因子的解离动力学,并且非常适合研究直接与组织成染色质的DNA相互作用的许多DNA处理复合物。 (C)2014由Elsevier Inc.发行

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