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沉默、细胞周期进程和DNA复制中的起始识别复合物

The origin recognition complex in silencing, cell cycle progression, and DNA replication.

作者信息

Loo S, Fox C A, Rine J, Kobayashi R, Stillman B, Bell S

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720, USA.

出版信息

Mol Biol Cell. 1995 Jun;6(6):741-56. doi: 10.1091/mbc.6.6.741.

Abstract

This report describes the isolation of ORC5, the gene encoding the fifth largest subunit of the origin recognition complex, and the properties of mutants with a defective allele of ORC5. The orc5-1 mutation caused temperature-sensitive growth and, at the restrictive temperature, caused cell cycle arrest. At the permissive temperature, the orc5-1 mutation caused an elevated plasmid loss rate that could be suppressed by additional tandem origins of DNA replication. The sequence of ORC5 revealed a potential ATP binding site, making Orc5p a candidate for a subunit that mediates the ATP-dependent binding of ORC to origins. Genetic interactions among orc2-1 and orc5-1 and other cell cycle genes provided further evidence for a role for the origin recognition complex (ORC) in DNA replication. The silencing defect caused by orc5-1 strengthened previous connections between ORC and silencing, and combined with the phenotypes caused by orc2 mutations, suggested that the complex itself functions in both processes.

摘要

本报告描述了起源识别复合体第五大亚基编码基因ORC5的分离,以及携带ORC5缺陷等位基因的突变体的特性。orc5-1突变导致温度敏感型生长,在限制温度下导致细胞周期停滞。在允许温度下,orc5-1突变导致质粒丢失率升高,这可被额外的串联DNA复制起点所抑制。ORC5的序列揭示了一个潜在的ATP结合位点,使Orc5p成为介导ORC与起点的ATP依赖性结合的亚基候选物。orc2-1、orc5-1与其他细胞周期基因之间的遗传相互作用为起源识别复合体(ORC)在DNA复制中的作用提供了进一步证据。orc5-1导致的沉默缺陷强化了之前ORC与沉默之间的联系,并与orc2突变引起的表型相结合,表明该复合体本身在这两个过程中均发挥作用。

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