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首页> 外文期刊>Nucleic Acids Research >Nucleosomes accelerate transcription factor dissociation
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Nucleosomes accelerate transcription factor dissociation

机译:核小体加速转录因子的解离

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Transcription factors (TF) bind DNA-target sites within promoters to activate gene expression. TFs target their DNA-recognition sequences with high specificity by binding with resident times of up to hours in vitro. However, in vivo TFs can exchange on the order of seconds. The factors that regulate TF dynamics in vivo and increase dissociation rates by orders of magnitude are not known. We investigated TF binding and dissociation dynamics at their recognition sequence within duplex DNA, single nucleosomes and short nucleosome arrays with single molecule total internal reflection fluorescence (smTIRF) microscopy. We find that the rate of TF dissociation from its site within either nucleosomes or nucleosome arrays is increased by 1000-fold relative to duplex DNA. Our results suggest that TF binding within chromatin could be responsible for the dramatic increase in TF exchange in vivo. Furthermore, these studies demonstrate that nucleosomes regulate DNA-protein interactions not only by preventing DNA-protein binding but by dramatically increasing the dissociation rate of protein complexes from their DNA-binding sites.
机译:转录因子(TF)结合启动子内的DNA靶位点以激活基因表达。 TF通过与长达数小时的体外停留时间结合,以高特异性靶向其DNA识别序列。但是,体内TF可以在数秒内交换。调节体内TF动态并增加解离速率达几个数量级的因素尚不清楚。我们用单分子全内反射荧光(smTIRF)显微镜研究了双链DNA,单核小体和短核小体阵列中TF结合和解离动力学的识别序列。我们发现,相对于双链DNA,TF从其在核小体或核小体阵列中的位点解离的速率增加了1000倍。我们的结果表明,染色质内的TF结合可能是体内TF交换急剧增加的原因。此外,这些研究表明,核小体不仅通过阻止DNA-蛋白质结合,而且通过显着提高蛋白质复合物从其DNA结合位点的解离速率来调节DNA-蛋白质相互作用。

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