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The scaffold/matrix attachment region binding protein hnRNP-U (SAF-A) is directly bound to chromosomal DNA in vivo: a chemical cross-linking study

机译:支架/基质附着区结合蛋白hnRNP-U(SAF-A)在体内直接与染色体DNA结合:化学交联研究

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摘要

The protein heterogeneous nuclear ribonucleoprotein U (hnRNP-U, also known as scaffold attachment factor A, SAF-A) is an abundant component of hnRNP particles and of the nuclear matrix. Previous experiments have demonstrated that, in vitro, hnRNP-U specifically binds to scaffold/matrix attachment (S/MAR) region DNA elements and could thus be involved in higher order chromatin structure. In this paper we report on the use of chemical cross-linking to investigate whether the protein is also bound to DNA in vivo, which is a prerequisite for its presumed function in chromatin loop formation. We have improved published methods for cross-linking proteins to DNA with the aim to minimize unspecific fixation and possible contamination with RNA binding proteins. Our protocol is based on a limited cross-linking of living human cells with formaldehyde, followed by the purification of DNA/protein complexes by two consecutive cesium chloride density gradient centrifugations. Analysis of the protein constituents of these complexes shows a specific subset of cross-linked proteins with the histones as major components. By western blotting, we demonstrate that hnRNP-U is efficiently cross-linked to DNA under experimental conditions that yield DNA/protein complexes with a buoyant density equivalent to that of native chromatin. Dimethylsulfate cross-linking and limited protease digestion of the complexes was used to establish that hnRNP-U is bound directly to DNA and not via cross-linking to other proteins. This is the first direct demonstration of the in vivo DNA binding of a S/MAR specific protein and suggests a structural role of hnRNP-U in chromatin organization.
机译:蛋白质异质核核糖核蛋白U(hnRNP-U,也称为支架附着因子A,SAF-A)是hnRNP颗粒和核基质的丰富成分。先前的实验表明,在体外,hnRNP-U特异性结合支架/基质附着(S / MAR)区DNA元件,因此可能参与了更高级别的染色质结构。在本文中,我们报道了化学交联的使用,以研究该蛋白是否在体内也与DNA结合,这是其在染色质环形成中假定功能的前提。我们已经改进了已发表的将蛋白质与DNA交联的方法,目的是最大程度地减少非特异性固定以及RNA结合蛋白的可能污染。我们的方案基于活的人类细胞与甲醛的有限交联,然后通过两次连续的氯化铯密度梯度离心法纯化DNA /蛋白质复合物。对这些复合物的蛋白质成分的分析显示,以组蛋白为主要成分的交联蛋白质的特定子集。通过蛋白质印迹,我们证明hnRNP-U在实验条件下有效交联到DNA,产生的DNA /蛋白质复合物的浮力密度与天然染色质相当。使用二甲基硫酸盐交联和复合物的有限蛋白酶消化来确定hnRNP-U直接与DNA结合,而不是通过与其他蛋白质的交联。这是S / MAR特异性蛋白在体内DNA结合的首次直接证明,表明hnRNP-U在染色质组织中的结构作用。

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