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CENP-T 氨基末端的 Ccp1-Ndc80 开关调控着着丝粒组装。

Ccp1-Ndc80 switch at the N terminus of CENP-T regulates kinetochore assembly.

机构信息

Department of Biology, New York University, New York, NY 10003-6688.

State Key Laboratory of Molecular Developmental Biology, Institute of Genetics and Developmental Biology, and Innovative Academy of Seed Design, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Proc Natl Acad Sci U S A. 2021 Nov 30;118(48). doi: 10.1073/pnas.2104459118.

Abstract

Kinetochores, a protein complex assembled on centromeres, mediate chromosome segregation. In most eukaryotes, centromeres are epigenetically specified by the histone H3 variant CENP-A. CENP-T, an inner kinetochore protein, serves as a platform for the assembly of the outer kinetochore Ndc80 complex during mitosis. How CENP-T is regulated through the cell cycle remains unclear. Ccp1 (counteracter of CENP-A loading protein 1) associates with centromeres during interphase but delocalizes from centromeres during mitosis. Here, we demonstrated that Ccp1 directly interacts with CENP-T. CENP-T is important for the association of Ccp1 with centromeres, whereas CENP-T centromeric localization depends on Mis16, a homolog of human RbAp48/46. We identified a Ccp1-interaction motif (CIM) at the N terminus of CENP-T, which is adjacent to the Ndc80 receptor motif. The CIM domain is required for Ccp1 centromeric localization, and the CIM domain-deleted mutant phenocopies Δ. The CIM domain can be phosphorylated by CDK1 (cyclin-dependent kinase 1). Phosphorylation of CIM weakens its interaction with Ccp1. Consistent with this, Ccp1 dissociates from centromeres through all stages of the cell cycle in the phosphomimetic mutant of the CIM domain, whereas in the phospho-null mutant of the domain, Ccp1 associates with centromeres during mitosis. We further show that the phospho-null mutant disrupts the positioning of the Ndc80 complex during mitosis, resulting in chromosome missegregation. This work suggests that competitive exclusion between Ccp1 and Ndc80 at the N terminus of CENP-T via phosphorylation ensures precise kinetochore assembly during mitosis and uncovers a previously unrecognized mechanism underlying kinetochore assembly through the cell cycle.

摘要

着丝粒是组装在着丝粒上的蛋白质复合物,介导染色体分离。在大多数真核生物中,着丝粒由组蛋白 H3 变体 CENP-A 表观遗传指定。内着丝粒蛋白 CENP-T 作为外着丝粒 Ndc80 复合物在有丝分裂期间组装的平台。CENP-T 如何通过细胞周期进行调节尚不清楚。Ccp1(CENP-A 加载蛋白 1 的拮抗物)在间期与着丝粒结合,但在有丝分裂期间从着丝粒上解离。在这里,我们证明 Ccp1 与 CENP-T 直接相互作用。CENP-T 对于 Ccp1 与着丝粒的结合很重要,而 CENP-T 着丝粒定位取决于 Mis16,Mis16 是人类 RbAp48/46 的同源物。我们在 CENP-T 的 N 端鉴定了一个 Ccp1 相互作用基序(CIM),该基序位于 Ndc80 受体基序的附近。CIM 结构域对于 Ccp1 着丝粒定位是必需的,并且缺失突变体表现出与Δ相同的表型。CIM 结构域可以被 CDK1(细胞周期蛋白依赖性激酶 1)磷酸化。CIM 的磷酸化削弱了它与 Ccp1 的相互作用。与此一致,在 CIM 结构域的磷酸化模拟突变体中,Ccp1 在细胞周期的所有阶段都从着丝粒上解离,而在该结构域的磷酸化缺失突变体中,Ccp1 在有丝分裂期间与着丝粒结合。我们进一步表明,磷酸化缺失突变体破坏了 Ndc80 复合物在有丝分裂期间的定位,导致染色体错误分离。这项工作表明,通过磷酸化在 CENP-T 的 N 端,Ccp1 和 Ndc80 之间的竞争排除确保了有丝分裂期间精确的着丝粒组装,并揭示了一个以前未被认识到的通过细胞周期组装着丝粒的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce58/8640933/156f62783a4f/pnas.202104459fig01.jpg

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