组蛋白及其修饰。

R S Wu, H T Panusz, C L Hatch, W M Bonner
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引用次数: 217

摘要

组蛋白构成了蛋白质核心,DNA围绕着它盘绕形成染色体的基本结构单元,即核小体。由于在染色体复制过程中需要大量新的组蛋白,因此组蛋白和DNA的合成受到复杂的调节。在RNA转录和DNA复制过程中,核小体的基本结构以及核小体之间的相互作用必须被极大地改变,以允许进入适当的酶和因子。对高度保守的组蛋白初级序列广泛而多样的翻译后修饰的存在为这种结构改变提供了明显的机会,但是尽管集中和持续的努力,组蛋白修饰与核小体功能之间的因果关系尚未阐明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Histones and their modifications.

Histones constitute the protein core around which DNA is coiled to form the basic structural unit of the chromosome known as the nucleosome. Because of the large amount of new histone needed during chromosome replication, the synthesis of histone and DNA is regulated in a complex manner. During RNA transcription and DNA replication, the basic nucleosomal structure as well as interactions between nucleosomes must be greatly altered to allow access to the appropriate enzymes and factors. The presence of extensive and varied post-translational modifications to the otherwise highly conserved histone primary sequences provides obvious opportunities for such structural alterations, but despite concentrated and sustained effort, causal connections between histone modifications and nucleosomal functions are not yet elucidated.

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