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Elg1复制因子C样复合体:基因组稳定性的新型守护者。

The Elg1 replication factor C-like complex: a novel guardian of genome stability.

作者信息

Aroya Shay Ben, Kupiec Martin

机构信息

Department of Molecular Microbiology and Biotechnology, Tel Aviv University, Ramat Aviv 69978, Israel.

出版信息

DNA Repair (Amst). 2005 Apr 4;4(4):409-17. doi: 10.1016/j.dnarep.2004.08.003.

Abstract

The remarkable stability of the eukaryotic genome is achieved by the activity of many overlapping surveillance and repair mechanism. Two protein complexes with resemblance to replication factor C (RFC) have been recently described, that play important roles in maintaining the stability of the genome. These RFC-like complexes (RLCs) share four common subunits (Rfc2-5) and each carry a unique large subunit (Rad24 or Ctf18) replacing the Rfc1 subunit of the replication complex. Work in several laboratories has recently uncovered a novel yeast gene, ELG1, which seems to play a central role in keeping the genome stable. elg1 mutants exhibit increased rates of spontaneous recombination and gross chromosomal rearrangements during vegetative growth. In addition, they lose chromosomes at an enhanced rate, show hyper-transposition of natural repeated elements and exhibit elongated telomeres. The Elg1 protein also associates with the Rfc2-5 subunits of replication factor C (RFC) to form a third RFC-like complex (RLC). Genetic and biochemical data indicate that the Elg1, Ctf18 and Rad24 RLCs work in three separate pathways important for maintaining the integrity of the genome and for coping with various genomic stresses. ELG1 is evolutionarily conserved and may play an important role in preventing the onset of cancer in humans. The Elg1 function is thus clearly required for maintaining genome stability during normal growth, and its absence has severe genetic consequences.

摘要

真核生物基因组的显著稳定性是通过许多重叠的监测和修复机制的活动来实现的。最近描述了两种与复制因子C(RFC)相似的蛋白质复合物,它们在维持基因组稳定性方面发挥着重要作用。这些类RFC复合物(RLC)共享四个共同亚基(Rfc2 - 5),并且每个都携带一个独特的大亚基(Rad24或Ctf18)来取代复制复合物的Rfc1亚基。几个实验室的研究最近发现了一个新的酵母基因ELG1,它似乎在保持基因组稳定方面起着核心作用。elg1突变体在营养生长期间表现出自发重组率和染色体大片段重排增加。此外,它们以更高的速率丢失染色体,显示天然重复元件的超转座,并表现出端粒延长。Elg1蛋白还与复制因子C(RFC)的Rfc2 - 5亚基结合,形成第三种类RFC复合物(RLC)。遗传和生化数据表明,Elg1、Ctf18和Rad24 RLC在维持基因组完整性和应对各种基因组应激的三个独立途径中发挥作用。ELG1在进化上是保守的,可能在预防人类癌症的发生中起重要作用。因此,Elg1功能显然是正常生长过程中维持基因组稳定性所必需的,其缺失会产生严重的遗传后果。

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