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组蛋白伴侣Vps75形成多种寡聚体组装体,能够介导组蛋白H3-H4四聚体与Asf1-H3-H4复合物之间的交换。

The histone chaperone Vps75 forms multiple oligomeric assemblies capable of mediating exchange between histone H3-H4 tetramers and Asf1-H3-H4 complexes.

作者信息

Hammond Colin M, Sundaramoorthy Ramasubramanian, Larance Mark, Lamond Angus, Stevens Michael A, El-Mkami Hassane, Norman David G, Owen-Hughes Tom

机构信息

Centre for Gene Regulation and Expression, School of Life Sciences, University of Dundee, Dundee DD1 5EH, UK.

Nucleic Acids Structure Research Group, University of Dundee, Dundee DD1 5EH, UK.

出版信息

Nucleic Acids Res. 2016 Jul 27;44(13):6157-72. doi: 10.1093/nar/gkw209. Epub 2016 Apr 1.

Abstract

Vps75 is a histone chaperone that has been historically characterized as homodimer by X-ray crystallography. In this study, we present a crystal structure containing two related tetrameric forms of Vps75 within the crystal lattice. We show Vps75 associates with histones in multiple oligomers. In the presence of equimolar H3-H4 and Vps75, the major species is a reconfigured Vps75 tetramer bound to a histone H3-H4 tetramer. However, in the presence of excess histones, a Vps75 dimer bound to a histone H3-H4 tetramer predominates. We show the Vps75-H3-H4 interaction is compatible with the histone chaperone Asf1 and deduce a structural model of the Vps75-Asf1-H3-H4 (VAH) co-chaperone complex using the Pulsed Electron-electron Double Resonance (PELDOR) technique and cross-linking MS/MS distance restraints. The model provides a molecular basis for the involvement of both Vps75 and Asf1 in Rtt109 catalysed histone H3 K9 acetylation. In the absence of Asf1 this model can be used to generate a complex consisting of a reconfigured Vps75 tetramer bound to a H3-H4 tetramer. This provides a structural explanation for many of the complexes detected biochemically and illustrates the ability of Vps75 to interact with dimeric or tetrameric H3-H4 using the same interaction surface.

摘要

Vps75是一种组蛋白伴侣,根据X射线晶体学,它在历史上被表征为同型二聚体。在本研究中,我们展示了一种晶体结构,该结构在晶格中包含两种相关的Vps75四聚体形式。我们发现Vps75在多种寡聚体中与组蛋白结合。在等摩尔的H3-H4和Vps75存在的情况下,主要物种是与组蛋白H3-H4四聚体结合的重新配置的Vps75四聚体。然而,在组蛋白过量的情况下,与组蛋白H3-H4四聚体结合的Vps75二聚体占主导。我们表明Vps75-H3-H4相互作用与组蛋白伴侣Asf1兼容,并使用脉冲电子-电子双共振(PELDOR)技术和交联MS/MS距离限制推导出Vps75-Asf1-H3-H4(VAH)共伴侣复合物的结构模型。该模型为Vps75和Asf1参与Rtt109催化的组蛋白H3 K9乙酰化提供了分子基础。在没有Asf1的情况下,该模型可用于生成由与H3-H4四聚体结合的重新配置的Vps75四聚体组成的复合物。这为许多通过生化方法检测到的复合物提供了结构解释,并说明了Vps75利用相同的相互作用表面与二聚体或四聚体H3-H4相互作用的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58b7/5291247/a177ac7fc913/gkw209fig1.jpg

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