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磷酸化修饰发生在酵母组蛋白伴侣蛋白 1 的附属结构域,暴露出核输出信号序列。

Phosphorylation in the accessory domain of yeast histone chaperone protein 1 exposes the nuclear export signal sequence.

机构信息

College of Biological Sciences, University of Tsukuba, Tsukuba, Japan.

Center for Computational Sciences, University of Tsukuba, Tsukuba, Japan.

出版信息

Proteins. 2022 Feb;90(2):317-321. doi: 10.1002/prot.26240. Epub 2021 Sep 24.

Abstract

Histone chaperone proteins assist in the formation of the histone octamers, the scaffold proteins that facilitate the packing of DNA into nucleosomes in the cell nucleus. One such histone chaperone protein is yeast nucleosome assembly protein 1 (yNap1), the crystal structure of which has been determined and found to have a nuclear export signal (NES) sequence within its long α-helix. Experimental evidence obtained from mutagenesis studies of the budding yeast suggests that the NES is necessary for the transport of yNap1 from the cell nucleus to the cytosol. However, the NES sequence is masked by an accessory domain, the exact role of which has not yet been elucidated, especially in nucleocytoplasmic transport. To clarify the role of the accessory domain, we focused on its phosphorylation, because proteomic experiments have identified multiple phosphorylation sites on yNap1. To study this phenomenon computationally, all-atom molecular dynamics simulations of the non-phosphorylated yNap1 (Nap1-nonP) and phosphorylated yNap1 (Nap1-P) systems were performed. Specifically, we addressed how the NES sequence is exposed to the protein surface by measuring its solvent-accessible surface area (SASA). It was found that the median of the SASA distribution of Nap1-P was greater than that of Nap1-nonP, indicating that phosphorylation in the accessory domain exposes the NES, resulting in its increased accessibility. In conclusion, yNap1 might modulate the accessibility of the NES by dislocating the accessory domain through its phosphorylation.

摘要

组蛋白伴侣蛋白协助形成组蛋白八聚体,组蛋白八聚体是一种支架蛋白,可促进 DNA 在细胞核内包装成核小体。酵母核小体组装蛋白 1(yNap1)就是一种组蛋白伴侣蛋白,其晶体结构已被确定,并在其长α螺旋内发现了一个核输出信号(NES)序列。对芽殖酵母进行诱变研究获得的实验证据表明,该 NES 对于 yNap1 从细胞核到细胞质的运输是必需的。然而,NES 序列被一个辅助结构域掩盖,其确切作用尚未阐明,特别是在核质转运中。为了阐明辅助结构域的作用,我们专注于其磷酸化,因为蛋白质组学实验已经在 yNap1 上鉴定出多个磷酸化位点。为了从计算角度研究这种现象,对非磷酸化 yNap1(Nap1-nonP)和磷酸化 yNap1(Nap1-P)系统进行了全原子分子动力学模拟。具体来说,我们通过测量其溶剂可及表面积(SASA)来研究 NES 序列如何暴露在蛋白质表面。结果发现,Nap1-P 的 SASA 分布中位数大于 Nap1-nonP,表明辅助结构域的磷酸化使 NES 暴露,从而使其可及性增加。总之,yNap1 可能通过其磷酸化使辅助结构域移位,从而调节 NES 的可及性。

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