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The histone chaperones nap1 and vps75 bind histones h3 and h4 in a tetrameric conformation.

机译:组蛋白伴侣nap1和vps75以四聚体构象结合组蛋白h3和h4。

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Histone chaperones physically interact with histones to direct proper assembly and disassembly of nucleosomes regulating diverse nuclear processes such as DNA replication, promoter remodeling, transcription elongation, DNA damage, and histone variant exchange. Currently, the best-characterized chaperone-histone interaction is that between the ubiquitous chaperone Asf1 and a dimer of H3 and H4. Nucleosome assembly proteins (Nap proteins) represent a distinct class of histone chaperone. Using pulsed electron double resonance (PELDOR) measurements and protein crosslinking, we show that two members of this class, Nap1 and Vps75, bind histones in the tetrameric conformation also observed when they are sequestered within the nucleosome. Furthermore, H3 and H4 trapped in their tetrameric state can be used as substrates in nucleosome assembly and chaperone-mediated lysine acetylation. This alternate mode of histone interaction provides a potential means of maintaining the integrity of the histone tetramer during cycles of nucleosome reassembly.
机译:组蛋白分子伴侣与组蛋白发生物理相互作用,以指导适当的组装和拆卸核小体,从而调节DNA复制,启动子重塑,转录延伸,DNA损伤和组蛋白变体交换等多种核过程。目前,最典型的分子伴侣-组蛋白相互作用是无处不在的分子伴侣Asf1与H3和H4的二聚体之间的相互作用。核小体组装蛋白(Nap蛋白)代表着一类独特的组蛋白伴侣。使用脉冲电子双共振(PELDOR)测量和蛋白质交联,我们显示该类别的两个成员Nap1和Vps75在四聚体构象中结合组蛋白,也被隔离在核小体中时观察到。此外,以四聚体状态捕获的H3和H4可用作核小体组装和伴侣介导的赖氨酸乙酰化的底物。组蛋白相互作用的这种替代模式提供了在核小体重组循环期间维持组蛋白四聚体完整性的潜在手段。

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