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组蛋白伴侣sNASP通过其TPR重复序列与组蛋白H3球状核心内的一个保守肽基序结合。

The histone chaperone sNASP binds a conserved peptide motif within the globular core of histone H3 through its TPR repeats.

作者信息

Bowman Andrew, Lercher Lukas, Singh Hari R, Zinne Daria, Timinszky Gyula, Carlomagno Teresa, Ladurner Andreas G

机构信息

Department of Physiological Chemistry, Biomedical Center, Faculty of Medicine, Ludwig-Maximilians-Universität München, Großhaderner Strasse 9, 82152 Planegg-Martinsried, Germany.

Leibniz University Hannover, BMWZ-Institute of Organic Chemistry, Schneiderberg 38, 30167 Hannover, Germany.

出版信息

Nucleic Acids Res. 2016 Apr 20;44(7):3105-17. doi: 10.1093/nar/gkv1372. Epub 2015 Dec 15.

Abstract

Eukaryotic chromatin is a complex yet dynamic structure, which is regulated in part by the assembly and disassembly of nucleosomes. Key to this process is a group of proteins termed histone chaperones that guide the thermodynamic assembly of nucleosomes by interacting with soluble histones. Here we investigate the interaction between the histone chaperone sNASP and its histone H3 substrate. We find that sNASP binds with nanomolar affinity to a conserved heptapeptide motif in the globular domain of H3, close to the C-terminus. Through functional analysis of sNASP homologues we identified point mutations in surface residues within the TPR domain of sNASP that disrupt H3 peptide interaction, but do not completely disrupt binding to full length H3 in cells, suggesting that sNASP interacts with H3 through additional contacts. Furthermore, chemical shift perturbations from(1)H-(15)N HSQC experiments show that H3 peptide binding maps to the helical groove formed by the stacked TPR motifs of sNASP. Our findings reveal a new mode of interaction between a TPR repeat domain and an evolutionarily conserved peptide motif found in canonical H3 and in all histone H3 variants, including CenpA and have implications for the mechanism of histone chaperoning within the cell.

摘要

真核染色质是一种复杂而动态的结构,其部分受核小体组装和解聚的调控。这一过程的关键是一组被称为组蛋白伴侣的蛋白质,它们通过与可溶性组蛋白相互作用来引导核小体的热力学组装。在这里,我们研究了组蛋白伴侣sNASP与其组蛋白H3底物之间的相互作用。我们发现sNASP以纳摩尔亲和力结合到H3球状结构域中靠近C端的一个保守七肽基序上。通过对sNASP同源物的功能分析,我们确定了sNASP的TPR结构域内表面残基的点突变,这些突变破坏了H3肽的相互作用,但并未完全破坏其在细胞中与全长H3的结合,这表明sNASP通过其他接触与H3相互作用。此外,(1)H-(15)N HSQC实验的化学位移扰动表明,H3肽的结合定位于由sNASP堆叠的TPR基序形成的螺旋槽。我们的研究结果揭示了TPR重复结构域与在经典H3以及包括CenpA在内的所有组蛋白H3变体中发现的进化保守肽基序之间的一种新的相互作用模式,并对细胞内组蛋白伴侣机制具有启示意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c84a/4838342/d7e6dc595526/gkv1372fig1.jpg

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