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人类细胞中的ORC1循环:I. 人类ORC1的细胞周期调控振荡

The ORC1 cycle in human cells: I. cell cycle-regulated oscillation of human ORC1.

作者信息

Tatsumi Yasutoshi, Ohta Satoshi, Kimura Hiroshi, Tsurimoto Toshiki, Obuse Chikashi

机构信息

Nara Institute of Science and Technology, 8916-5 Takayama, Ikoma, Nara 630-0101, Japan.

出版信息

J Biol Chem. 2003 Oct 17;278(42):41528-34. doi: 10.1074/jbc.M307534200. Epub 2003 Aug 8.

Abstract

Components of ORC (the origin recognition complex) are highly conserved among eukaryotes and are thought to play an essential role in the initiation of DNA replication. The level of the largest subunit of human ORC (ORC1) during the cell cycle was studied in several human cell lines with a specific antibody. In all cell lines, ORC1 levels oscillate: ORC1 starts to accumulate in mid-G1 phase, reaches a peak at the G1/S boundary, and decreases to a basal level in S phase. In contrast, the levels of other ORC subunits (ORCs 2-5) remain constant throughout the cell cycle. The oscillation of ORC1, or the ORC1 cycle, also occurs in cells expressing ORC1 ectopically from a constitutive promoter. Furthermore, the 26 S proteasome inhibitor MG132 blocks the decrease in ORC1, suggesting that the ORC1 cycle is mainly due to 26 S proteasome-dependent degradation. Arrest of the cell cycle in early S phase by hydroxyurea, aphidicolin, or thymidine treatment is associated with basal levels of ORC1, indicating that ORC1 proteolysis starts in early S phase and is independent of S phase progression. These observations indicate that the ORC1 cycle in human cells is highly linked with cell cycle progression, allowing the initiation of replication to be coordinated with the cell cycle and preventing origins from refiring.

摘要

起源识别复合物(ORC)的组分在真核生物中高度保守,并且被认为在DNA复制起始过程中发挥着至关重要的作用。利用一种特异性抗体,在几种人类细胞系中研究了人类ORC最大亚基(ORC1)在细胞周期中的水平。在所有细胞系中,ORC1水平呈振荡变化:ORC1在G1期中期开始积累,在G1/S边界达到峰值,并在S期降至基础水平。相比之下,其他ORC亚基(ORC2 - 5)的水平在整个细胞周期中保持恒定。ORC1的振荡,即ORC1循环,也发生在从组成型启动子异位表达ORC1的细胞中。此外,26S蛋白酶体抑制剂MG132可阻断ORC1的减少,这表明ORC1循环主要是由于26S蛋白酶体依赖性降解所致。用羟基脲、阿非迪霉素或胸苷处理使细胞周期阻滞在S期早期,这与ORC1的基础水平相关,表明ORC1的蛋白水解在S期早期开始,且与S期进程无关。这些观察结果表明,人类细胞中的ORC1循环与细胞周期进程高度相关,使得复制起始能够与细胞周期协调,并防止复制起点再次激活。

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