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Mis18 复合物组装的结构基础及其对着丝粒维持的影响。

Structural basis for Mis18 complex assembly and its implications for centromere maintenance.

机构信息

Wellcome Centre for Cell Biology, University of Edinburgh, Edinburgh, EH9 3BF, UK.

Department of Biological Chemistry, University of Michigan, Ann Arbor, MI, 48109, USA.

出版信息

EMBO Rep. 2024 Aug;25(8):3348-3372. doi: 10.1038/s44319-024-00183-w. Epub 2024 Jul 1.

Abstract

The centromere, defined by the enrichment of CENP-A (a Histone H3 variant) containing nucleosomes, is a specialised chromosomal locus that acts as a microtubule attachment site. To preserve centromere identity, CENP-A levels must be maintained through active CENP-A loading during the cell cycle. A central player mediating this process is the Mis18 complex (Mis18α, Mis18β and Mis18BP1), which recruits the CENP-A-specific chaperone HJURP to centromeres for CENP-A deposition. Here, using a multi-pronged approach, we characterise the structure of the Mis18 complex and show that multiple hetero- and homo-oligomeric interfaces facilitate the hetero-octameric Mis18 complex assembly composed of 4 Mis18α, 2 Mis18β and 2 Mis18BP1. Evaluation of structure-guided/separation-of-function mutants reveals structural determinants essential for cell cycle controlled Mis18 complex assembly and centromere maintenance. Our results provide new mechanistic insights on centromere maintenance, highlighting that while Mis18α can associate with centromeres and deposit CENP-A independently of Mis18β, the latter is indispensable for the optimal level of CENP-A loading required for preserving the centromere identity.

摘要

着丝粒由富含 CENP-A(一种组蛋白 H3 变体)的核小体定义,是作为微管附着位点的特化染色体位点。为了保持着丝粒的身份,CENP-A 水平必须通过细胞周期中的活性 CENP-A 加载来维持。介导这一过程的核心参与者是 Mis18 复合物(Mis18α、Mis18β 和 Mis18BP1),它将 CENP-A 特异性伴侣 HJURP 招募到着丝粒,用于 CENP-A 沉积。在这里,我们采用多管齐下的方法对 Mis18 复合物的结构进行了表征,并表明多个异源和同源寡聚界面促进了由 4 个 Mis18α、2 个 Mis18β 和 2 个 Mis18BP1 组成的异源八聚体 Mis18 复合物的组装。对结构导向/功能分离突变体的评估揭示了结构决定因素对于细胞周期控制的 Mis18 复合物组装和着丝粒维持至关重要。我们的结果提供了关于着丝粒维持的新的机制见解,突出表明虽然 Mis18α 可以独立于 Mis18β 与着丝粒结合并沉积 CENP-A,但后者对于维持着丝粒身份所需的最佳 CENP-A 加载水平是不可或缺的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a852/11315898/6ee3a0f04ea9/44319_2024_183_Fig1_HTML.jpg

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