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Interactions With Histone H3 & Tools to Study Them

机译:与组蛋白H3的交互和研究它们的工具

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Histones are an integral part of chromatin and thereby influence its structure, dynamics, and functions. The effects of histone variants, posttranslational modifications, and binding proteins is therefore of great interest. From the moment that they are deposited on chromatin, nucleosomal histones undergo dynamic changes in function of the cell cycle, and as DNA is transcribed and replicated. In the process, histones are not only modified and bound by various proteins, but also shuffled, evicted, or replaced. Technologies and tools to study such dynamic events continue to evolve and better our understanding of chromatin and of histone proteins proper. Here, we provide an overview of H3.1 and H3.3 histone dynamics throughout the cell cycle, while highlighting some of the tools used to study their protein-protein interactions. We specifically discuss how histones are chaperoned, modified, and bound by various proteins at different stages of the cell cycle. Established and select emerging technologies that furthered (or have a high potential of furthering) our understanding of the dynamic histone-protein interactions are emphasized. This includes experimental tools to investigate spatiotemporal changes on chromatin, the role of histone chaperones, histone posttranslational modifications, and histone-binding effector proteins.
机译:组蛋白是染色蛋白的一部分,从而影响其结构,动力学和功能。因此,组蛋白变体,后翻译和结合蛋白的影响非常令人兴趣。从它们沉积在染色蛋白的那一刻起,核体组蛋白在细胞周期的功能中经历动态变化,并且随着DNA被转录并复制。在该过程中,组蛋白不仅被各种蛋白质修饰和结合,而且还被各种蛋白质束缚,而且还擦拭,驱逐或更换。研究这种动态事件的技术和工具继续发展,更好地了解染色质和组蛋白蛋白的理解。在这里,我们在整个细胞周期中概述了H3.1和H3.3组蛋白动力学,同时突出了用于研究其蛋白质 - 蛋白质相互作用的一些工具。我们专门讨论组蛋白是如何在细胞周期的不同阶段的各种蛋白质的辅导,修饰的和结合。建立并选择进一步的新兴技术(或具有高潜力的进一步),我们强调了我们对动态组蛋白蛋白质相互作用的理解。这包括调查染色质的时空变化的实验工具,组蛋白伴侣,组蛋白后改变和组蛋白结合效应蛋白的作用。

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