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The SWI/SNF Complex Creates Loop Domains in DNA and Polynucleosome Arrays and Can Disrupt DNA-Histone Contacts within These Domains

机译:SWI / SNF复合体在DNA和多核小体阵列中形成环结构域,并可能破坏这些结构域中的DNA-组蛋白接触

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摘要

To understand the mechanisms by which the chromatin-remodeling SWI/SNF complex interacts with DNA and alters nucleosome organization, we have imaged the SWI/SNF complex with both naked DNA and nucleosomal arrays by using energy-filtered microscopy. By making ATP-independent contacts with DNA at multiple sites on its surface, SWI/SNF creates loops, bringing otherwise-distant sites into close proximity. In the presence of ATP, SWI/SNF action leads to the disruption of nucleosomes within domains that appear to be topologically constrained by the complex. The data indicate that the action of one SWI/SNF complex on an array of nucleosomes can lead to the formation of a region where multiple nucleosomes are disrupted. Importantly, nucleosome disruption by SWI/SNF results in a loss of DNA content from the nucleosomes. This indicates a mechanism by which SWI/SNF unwraps part of the nucleosomal DNA.
机译:为了了解染色质重塑SWI / SNF复合物与DNA相互作用并改变核小体组织的机制,我们使用能量过滤显微镜对裸露的DNA和核小体阵列的SWI / SNF复合物进行了成像。通过使SWI / SNF在其表面上的多个位点与DNA保持不依赖ATP的接触,SWI / SNF形成了一个环,使原本就很远的位点紧密靠近。在ATP的存在下,SWI / SNF的作用会导致核小体在结构域内的破坏,这些结构域似乎受该复合物的拓扑约束。数据表明,一种SWI / SNF复合物对一系列核小体的作用可导致形成多个核小体被破坏的区域。重要的是,SWI / SNF对核小体的破坏会导致核小体DNA含量的损失。这表明SWI / SNF会解开部分核小体DNA的机制。

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