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H2A-H2B 特异性植物组蛋白伴侣的结构-功能关系。

Structure-function relationship of H2A-H2B specific plant histone chaperones.

机构信息

Institute of Life Sciences, Bhubaneswar, Odisha, 751023, India.

Manipal Academy of Higher Education, Manipal, Karnataka, 576104, India.

出版信息

Cell Stress Chaperones. 2020 Jan;25(1):1-17. doi: 10.1007/s12192-019-01050-7. Epub 2019 Nov 9.

Abstract

Studies on chromatin structure and function have gained a revived popularity. Histone chaperones are significant players in chromatin organization. They play a significant role in vital nuclear functions like transcription, DNA replication, DNA repair, DNA recombination, and epigenetic regulation, primarily by aiding processes such as histone shuttling and nucleosome assembly/disassembly. Like the other eukaryotes, plants also have a highly orchestrated and dynamic chromatin organization. Plants seem to have more isoforms within the same family of histone chaperones, as compared with other organisms. As some of these are specific to plants, they must have evolved to perform functions unique to plants. However, it appears that only little effort has gone into understanding the structural features of plant histone chaperones and their structure-function relationships. Studies on plant histone chaperones are essential for understanding their role in plant chromatin organization and how plants respond during stress conditions. This review is on the structural and functional aspects of plant histone chaperone families, specifically those which bind to H2A-H2B, viz nucleosome assembly protein (NAP), nucleoplasmin (NPM), and facilitates chromatin transcription (FACT). Here, we also present comparative analyses of these plant histone chaperones with available histone chaperone structures. The review hopes to incite interest among researchers to pursue further research in the area of plant chromatin and the associated histone chaperones.

摘要

染色质结构与功能的研究再度受到关注。组蛋白伴侣在染色质组织中扮演着重要角色。它们在转录、DNA 复制、DNA 修复、DNA 重组和表观遗传调控等重要核功能中发挥重要作用,主要通过辅助组蛋白穿梭和核小体组装/拆卸等过程来实现。与其他真核生物一样,植物也具有高度协调和动态的染色质组织。与其他生物相比,植物同一组蛋白伴侣家族内似乎有更多的同工型。由于其中一些同工型是植物特有的,它们一定是为了执行植物特有的功能而进化而来的。然而,似乎很少有人努力去理解植物组蛋白伴侣的结构特征及其结构-功能关系。研究植物组蛋白伴侣对于理解它们在植物染色质组织中的作用以及植物在应激条件下的反应至关重要。本文综述了植物组蛋白伴侣家族的结构和功能方面,特别是那些与 H2A-H2B 结合的家族,即核小体组装蛋白(NAP)、核质蛋白(NPM)和促进染色质转录(FACT)。在这里,我们还对这些植物组蛋白伴侣与现有组蛋白伴侣结构进行了比较分析。本文希望能激发研究人员对植物染色质及其相关组蛋白伴侣领域的进一步研究兴趣。

相似文献

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Structure-function relationship of H2A-H2B specific plant histone chaperones.H2A-H2B 特异性植物组蛋白伴侣的结构-功能关系。
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