在细胞核中形成染色质:砖块和建筑师。

David Sitbon, Katrina Podsypanina, Tejas Yadav, Geneviève Almouzni
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引用次数: 21

摘要

细胞核中的染色质组织除了遗传编码外,还提供了大量的信息。了解这种组织如何影响基因组稳定性和影响细胞命运和肿瘤发生是一个快速进展的领域。考虑到核小体(染色质结构的基本单位),对组蛋白变体(砖块)及其由组蛋白伴侣(建筑师)选择性装载的研究特别有用。在这里,我们报告了最近的进展,了解组蛋白变异及其伴侣之间的关系如何促进肿瘤发生,使用细胞系和非洲爪蟾发育作为模型系统。除了它们在组蛋白沉积中的作用外,我们还记录了组蛋白伴侣和其他控制高阶结构和控制DNA代谢的染色质因子之间的相互作用。我们强调了砖块(H3.3和CENP-A)和建筑师(HIRA, HJURP和DAXX)的精细装配线是如何适应发育和病理变化的关键。这一概念进步的一个例子是p53-null肿瘤细胞对HJURP (CENP-A (CenH3变体)的组蛋白伴侣)的调节表现出的高度敏感性。我们将讨论这些发现如何为癌症治疗开辟新的治疗模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shaping Chromatin in the Nucleus: The Bricks and the Architects.

Chromatin organization in the nucleus provides a vast repertoire of information in addition to that encoded genetically. Understanding how this organization impacts genome stability and influences cell fate and tumorigenesis is an area of rapid progress. Considering the nucleosome, the fundamental unit of chromatin structure, the study of histone variants (the bricks) and their selective loading by histone chaperones (the architects) is particularly informative. Here, we report recent advances in understanding how relationships between histone variants and their chaperones contribute to tumorigenesis using cell lines and Xenopus development as model systems. In addition to their role in histone deposition, we also document interactions between histone chaperones and other chromatin factors that govern higher-order structure and control DNA metabolism. We highlight how a fine-tuned assembly line of bricks (H3.3 and CENP-A) and architects (HIRA, HJURP, and DAXX) is key in adaptation to developmental and pathological changes. An example of this conceptual advance is the exquisite sensitivity displayed by p53-null tumor cells to modulation of HJURP, the histone chaperone for CENP-A (CenH3 variant). We discuss how these findings open avenues for novel therapeutic paradigms in cancer care.

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