中期抑制CENP-A组装需要HJURP磷酸化和M18BP1的抑制

J. C. F. Servin, A. Straight
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引用次数: 0

摘要

着丝粒是有丝分裂着丝点组装的基础,因此对染色体分离至关重要。着丝粒在表观遗传学上由含有组蛋白H3变体CENP-A的核小体定义。CENP-A核小体组装与复制分离,发生在G1期,但细胞如何控制这一时间尚不完全清楚。在脊椎动物中,CENP-A核小体的形成需要CENP-C和Mis18复合物,后者将CENP-A伴侣HJURP招募到着丝粒上。利用无细胞系统,我们发现了两个在中期抑制CENP-A组装的活性。HJURP磷酸化阻止了中期HJURP和CENP-C之间的相互作用,阻断了可溶性CENP-A向着丝粒的传递。HJURP的非磷酸化突变体在中期组成性地结合CENP-C,但不足以组装新的CENP-A。我们发现M18BP1。Mis18复合体的S亚基也与CENP-C结合,竞争性地抑制HJURP进入着丝粒。去除这两种抑制活性会导致中期的CENP-A组装。脊椎动物的CENP-A组装通常局限于G1期。两种抑制活性,HJURP的磷酸化和M18BP1的竞争性结合。S到CENP-C,阻断HJURP进入中期着丝粒。去除这些抑制活性会导致中期的CENP-A组装。
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Repression of CENP-A assembly in metaphase requires HJURP phosphorylation and inhibition by M18BP1
Centromeres are the foundation for mitotic kinetochore assembly and thus are essential for chromosome segregation. Centromeres are epigenetically defined by nucleosomes containing the histone H3 variant CENP-A. CENP-A nucleosome assembly is uncoupled from replication and occurs in G1 but how cells control this timing is incompletely understood. The formation of CENP-A nucleosomes in vertebrates requires CENP-C and the Mis18 complex which recruit the CENP-A chaperone HJURP to centromeres. Using a cell-free system for centromere assembly in X. laevis egg extracts, we discover two activities that inhibit CENP-A assembly in metaphase. HJURP phosphorylation prevents the interaction between HJURP and CENP-C in metaphase, blocking the delivery of soluble CENP-A to centromeres. Non-phosphorylatable mutants of HJURP constitutively bind CENP-C in metaphase but are not sufficient for new CENP-A assembly. We find that the M18BP1.S subunit of the Mis18 complex also binds to CENP-C to competitively inhibit HJURP’s access to centromeres. Removal of these two inhibitory activities causes CENP-A assembly in metaphase. SUMMARY Vertebrate CENP-A assembly is normally restricted to G1 phase. Two inhibitory activities, phosphorylation of HJURP and competitive binding of M18BP1.S to CENP-C, block HJURP’s access to the metaphase centromere. Removal of these inhibitory activities causes CENP-A assembly in metaphase.
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