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Nonhistone Scm3 binds to AT-rich DNA to organize atypical centromeric nucleosome of budding yeast.

机译:Nonhistone Scm3与富含AT的DNA结合,以组织出芽酵母的非典型着丝粒核小体。

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The molecular architecture of centromere-specific nucleosomes containing histone variant CenH3 is controversial. We have biochemically reconstituted two distinct populations of nucleosomes containing Saccharomyces cerevisiae CenH3 (Cse4). Reconstitution of octameric nucleosomes containing histones Cse4/H4/H2A/H2B is robust on noncentromere DNA, but inefficient on AT-rich centromere DNA. However, nonhistone Scm3, which is required for Cse4 deposition in vivo, facilitates in vitro reconstitution of Cse4/H4/Scm3 complexes on AT-rich centromere sequences. Scm3 has a nonspecific DNA binding domain that shows preference for AT-rich DNA and a histone chaperone domain that promotes specific loading of Cse4/H4. In live cells, Scm3-GFP is enriched at centromeres in all cell cycle phases. Chromatin immunoprecipitation confirms that Scm3 occupies centromere DNA throughout the cell cycle, even when Cse4 and H4 are temporarily dislodged in S phase. These findings suggest a model in which centromere-bound Scm3 aids recruitment of Cse4/H4 to assemble and maintain an H2A/H2B-deficient centromeric nucleosome.
机译:含有组蛋白变体CenH3的着丝粒特异性核小体的分子结构是有争议的。我们已经用化学方法重组了两个不同的含有酿酒酵母CenH3(Cse4)的核小体群体。含有组蛋白Cse4 / H4 / H2A / H2B的八聚体核小体的重组在非着丝粒DNA上很稳固,但在富含AT的着丝粒DNA上效率低下。然而,体内Cse4沉积所需的非组蛋白Scm3有助于在富含AT的着丝粒序列上体外重建Cse4 / H4 / Scm3复合物。 Scm3具有一个非特异性DNA结合结构域,该结构域显示出对富含AT的DNA的偏好,而一个组蛋白伴侣结构域则促进了Cse4 / H4的特异性加载。在活细胞中,Scm3-GFP在所有细胞周期阶段的着丝粒均富集。染色质免疫沉淀证实,即使Cse4和H4暂时移入S期,Scm3在整个细胞周期中仍占据着着丝粒DNA。这些发现提出了一种模型,其中着丝粒结合的Scm3有助于Cse4 / H4的募集,以装配和维持H2A / H2B缺陷型着丝粒核小体。

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