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首页> 外文期刊>Nucleic acids research >Scm3 deposits a (Cse4–H4)2 tetramer onto DNA through a Cse4–H4 dimer intermediate
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Scm3 deposits a (Cse4–H4)2 tetramer onto DNA through a Cse4–H4 dimer intermediate

机译:Scm3通过Cse4-H4二聚体中间体将(Cse4-H4)2四聚体沉积到DNA上

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The assembly of centromeric nucleosomes is mediated by histone variant-specific chaperones. In budding yeast, the centromere-specific histone H3 variant is Cse4, and the histone chaperone Scm3 functions as a Cse4-specific nucleosome assembly factor. Here, we show that Scm3 exhibits specificity for Cse4–H4, but also interacts with major-type H3–H4 and H2A–H2B. Previously published structures of the Scm3 histone complex demonstrate that Scm3 binds only one copy of Cse4–H4. Consistent with this, we show that Scm3 deposits Cse4–H4 through a dimer intermediate onto deoxyribonucleic acid (DNA) to form a (Cse4–H4)2–DNA complex (tetrasome). Scm3-bound Cse4–H4 does not form a tetramer in the absence of DNA. Moreover, we demonstrate that Cse4 and H3 are structurally compatible to be incorporated in the same nucleosome to form heterotypic particles. Our data shed light on the mechanism of Scm3-mediated nucleosome assembly at the centromere.
机译:着丝粒核小体的组装由组蛋白变体特异性伴侣蛋白介导。在出芽的酵母中,着丝粒特异的组蛋白H3变体是Cse4,而组蛋白伴侣Scm3则是Cse4特异的核小体装配因子。在这里,我们显示Scm3对Cse4-H4具有特异性,但也与主要类型的H3-H4和H2A-H2B相互作用。先前发表的Scm3组蛋白复合物结构表明Scm3仅结合Cse4-H4的一个拷贝。与此相符,我们表明Scm3通过二聚体中间体将Cse4-H4沉积到脱氧核糖核酸(DNA)上形成(Cse4-H4) 2 -DNA复合物(四体)。在没有DNA的情况下,结合Scm3的Cse4-H4不会形成四聚体。此外,我们证明Cse4和H3在结构上相容,可以并入同一核小体中以形成异型颗粒。我们的数据阐明了着丝粒Scm3介导的核小体组装的机制。

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