首页> 外文期刊>Journal of Molecular Biology >The interaction of HMGB1 and linker histones occurs through their acidic and basic tails.
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The interaction of HMGB1 and linker histones occurs through their acidic and basic tails.

机译:HMGB1和接头组蛋白的相互作用通过其酸性和碱性尾巴发生。

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摘要

H1 and HMGB1 bind to linker DNA in chromatin, in the vicinity of the nucleosome dyad. They appear to have opposing effects on the nucleosome, H1 stabilising it by "sealing" two turns of DNA around the octamer, and HMGB1 destabilising it, probably by bending the adjacent DNA. Their presence in chromatin might be mutually exclusive. Displacement/replacement of one by the other as a result of their highly dynamic binding in vivo might, in principle, involve interactions between them. Chemical cross-linking and gel-filtration show that a 1:1 linker histone/HMGB1 complex is formed, which persists at physiological ionic strength, and that complex formation requires the acidic tail of HMGB1. NMR spectroscopy shows that the linker histone binds, predominantly through its basic C-terminal domain, to the acidic tail of HMGB1, thereby disrupting the interaction of the tail with the DNA-binding faces of the HMG boxes. A potential consequence of this interaction is enhanced DNA binding by HMGB1, and concomitantly lowered affinity of H1 for DNA. In a chromatin context, this might facilitate displacement of H1 by HMGB1.
机译:H1和HMGB1在核小体二聚体附近与染色质中的接头DNA结合。它们似乎对核小体有相反的作用,H1通过在八聚体周围“密封”两圈DNA来稳定它,而HMGB1可能通过弯曲相邻的DNA使它不稳定。它们在染色质中的存在可能是互斥的。由于它们在体内的高度动态结合,彼此之间的置换/置换原则上可能涉及它们之间的相互作用。化学交联和凝胶过滤显示形成了1:1的连接蛋白组蛋白/ HMGB1复合物,该复合物在生理离子强度下持续存在,并且形成复合物需要HMGB1的酸性尾巴。 NMR光谱显示,接头组蛋白主要通过其碱性C末端结构域与HMGB1的酸性尾部结合,从而破坏了尾部与HMG盒的DNA结合面的相互作用。这种相互作用的潜在结果是HMGB1增强了DNA结合,同时降低了H1对DNA的亲和力。在染色质环境中,这可能有助于HMGB1取代H1。

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