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Chromatin Association of Human Origin Recognition Complex, Cdc6, and Minichromosome Maintenance Proteins during the Cell Cycle: Assembly of Prereplication Complexes in Late Mitosis

机译:人类起源识别复合体,Cdc6和微型染色体维持蛋白在细胞周期中的染色质协会:晚期有丝分裂中的复制前复合体的组装。

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摘要

Evidence obtained from studies with yeast and Xenopus indicate that the initiation of DNA replication is a multistep process. The origin recognition complex (ORC), Cdc6p, and minichromosome maintenance (MCM) proteins are required for establishing prereplication complexes, upon which initiation is triggered by the activation of cyclin-dependent kinases and the Dbf4p-dependent kinase Cdc7p. The identification of human homologues of these replication proteins allows investigation of S-phase regulation in mammalian cells. Using centrifugal elutriation of several human cell lines, we demonstrate that whereas human Orc2 (hOrc2p) and hMcm proteins are present throughout the cell cycle, hCdc6p levels vary, being very low in early G1 and accumulating until cells enter mitosis. hCdc6p can be polyubiquitinated in vivo, and it is stabilized by proteasome inhibitors. Similar to the case for hOrc2p, a significant fraction of hCdc6p is present on chromatin throughout the cell cycle, whereas hMcm proteins alternate between soluble and chromatin-bound forms. Loading of hMcm proteins onto chromatin occurs in late mitosis concomitant with the destruction of cyclin B, indicating that the mitotic kinase activity inhibits prereplication complex formation in human cells.
机译:从酵母和非洲爪蟾研究中获得的证据表明,DNA复制的启动是一个多步骤过程。建立复制前复合物需要起源识别复合物(ORC),Cdc6p和微染色体维持(MCM)蛋白,然后通过细胞周期蛋白依赖性激酶和Dbf4p依赖性激酶Cdc7p的激活来触发起始。这些复制蛋白的人类同源物的鉴定允许研究哺乳动物细胞中的S期调节。使用几种人类细胞系的离心淘析,我们证明了人类Orc2(hOrc2p)和hMcm蛋白存在于整个细胞周期中,而hCdc6p的水平却有所不同,在早期的G1中非常低,并且在细胞进入有丝分裂之前一直积累。 hCdc6p可以在体内进行多泛素化,并通过蛋白酶体抑制剂使其稳定。与hOrc2p的情况类似,在整个细胞周期中,染色质上都存在大量的hCdc6p,而hMcm蛋白则在可溶性和染色质结合形式之间交替。 hMcm蛋白在染色质上的加载发生在有丝分裂晚期,伴随着细胞周期蛋白B的破坏,这表明有丝分裂激酶活性抑制了人类细胞中复制前复合物的形成。

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