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首页> 外文期刊>Nucleic acids research >The activity of the histone chaperone yeast Asf1 in the assembly and disassembly of histone H3/H4–DNA complexes
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The activity of the histone chaperone yeast Asf1 in the assembly and disassembly of histone H3/H4–DNA complexes

机译:组蛋白伴侣酵母Asf1在组蛋白H3 / H4-DNA复合体的组装和拆卸中的活性

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The deposition of the histones H3/H4 onto DNA to give the tetrasome intermediate and the displacement of H3/H4 from DNA are thought to be the first and the last steps in nucleosome assembly and disassembly, respectively. Anti-silencing function 1 (Asf1) is a chaperone of the H3/H4 dimer that functions in both of these processes. However, little is known about the thermodynamics of chaperone–histone interactions or the direct role of Asf1 in the formation or disassembly of histone–DNA complexes. Here, we show that Saccharomyces cerevisiae Asf1 shields H3/H4 from unfavorable DNA interactions and aids the formation of favorable histone–DNA interactions through the formation of disomes. However, Asf1 was unable to disengage histones from DNA for tetrasomes formed with H3/H4 and strong nucleosome positioning DNA sequences or tetrasomes weakened by mutant (H3K56Q/H4) histones or non-positioning DNA sequences. Furthermore, Asf1 did not associate with preformed tetrasomes. These results are consistent with the measured affinity of Asf1 for H3/H4 dimers of 2.5?nM, which is weaker than the association of H3/H4 for DNA. These studies support a mechanism by which Asf1 aids H3/H4 deposition onto DNA but suggest that additional factors or post-translational modifications are required for Asf1 to remove H3/H4 from tetrasome intermediates in chromatin.
机译:将组蛋白H3 / H4沉积到DNA上以得到四体中间体,从DNA置换H3 / H4被认为分别是核小体组装和拆卸的第一步和最后一步。抗沉默功能1(Asf1)是H3 / H4二聚体的分子伴侣,在这两个过程中均起作用。但是,关于分子伴侣-组蛋白相互作用的热力学或组蛋白-DNA复合物的形成或分解中Asf1的直接作用知之甚少。在这里,我们显示酿酒酵母Asf1可以保护H3 / H4免受不利的DNA相互作用,并通过二聚体的形成来帮助形成有利的组蛋白-DNA相互作用。但是,对于由H3 / H4和强核小体定位DNA序列形成的四体,或由突变(H3K56Q / H4)组蛋白或非定位DNA序列减弱的四体,Asf1无法从DNA中分离组蛋白。此外,Asf1与预先形成的四体不相关。这些结果与测得的Asf1对H3 / H4二聚体2.5?nM的亲和力一致,该亲和力比H3 / H4对DNA的缔合要弱。这些研究支持了Asf1辅助H3 / H4沉积到DNA上的机制,但表明Asf1需要其他因子或翻译后修饰才能从染色质的四体中间体中去除H3 / H4。

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