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EXO1中的一种突变在DNA错配修复和复制后修复中定义了可分离的作用。

A mutation in EXO1 defines separable roles in DNA mismatch repair and post-replication repair.

作者信息

Tran Phuoc T, Fey Julien P, Erdeniz Naz, Gellon Lionel, Boiteux Serge, Liskay R Michael

机构信息

Department of Radiation Oncology, Stanford Hospital & Clinics, Stanford, CA 94305, USA.

出版信息

DNA Repair (Amst). 2007 Nov;6(11):1572-83. doi: 10.1016/j.dnarep.2007.05.004. Epub 2007 Jun 29.

Abstract

Replication forks stall at DNA lesions or as a result of an unfavorable replicative environment. These fork stalling events have been associated with recombination and gross chromosomal rearrangements. Recombination and fork bypass pathways are the mechanisms accountable for restart of stalled forks. An important lesion bypass mechanism is the highly conserved post-replication repair (PRR) pathway that is composed of error-prone translesion and error-free bypass branches. EXO1 codes for a Rad2p family member nuclease that has been implicated in a multitude of eukaryotic DNA metabolic pathways that include DNA repair, recombination, replication, and telomere integrity. In this report, we show EXO1 functions in the MMS2 error-free branch of the PRR pathway independent of the role of EXO1 in DNA mismatch repair (MMR). Consistent with the idea that EXO1 functions independently in two separate pathways, we defined a domain of Exo1p required for PRR distinct from those required for interaction with MMR proteins. We then generated a point mutant exo1 allele that was defective for the function of Exo1p in MMR due to disrupted interaction with Mlh1p, but still functional for PRR. Lastly, by using a compound exo1 mutant that was defective for interaction with Mlh1p and deficient for nuclease activity, we provide further evidence that Exo1p plays both structural and catalytic roles during MMR.

摘要

复制叉会在DNA损伤处停滞,或者由于不利的复制环境而停滞。这些复制叉停滞事件与重组和染色体大片段重排有关。重组和叉道绕过途径是负责重新启动停滞复制叉的机制。一种重要的损伤绕过机制是高度保守的复制后修复(PRR)途径,它由易错的跨损伤和无错绕过分支组成。EXO1编码一种Rad2p家族成员核酸酶,该酶参与了多种真核生物DNA代谢途径,包括DNA修复、重组、复制和端粒完整性。在本报告中,我们表明EXO1在PRR途径的MMS2无错分支中发挥作用,独立于EXO1在DNA错配修复(MMR)中的作用。与EXO1在两条独立途径中独立发挥作用的观点一致,我们定义了Exo1p在PRR中所需的结构域,该结构域不同于与MMR蛋白相互作用所需的结构域。然后,我们生成了一个点突变exo1等位基因,由于与Mlh1p的相互作用被破坏,该等位基因在MMR中Exo1p的功能上存在缺陷,但在PRR中仍具有功能。最后,通过使用一个与Mlh1p相互作用存在缺陷且核酸酶活性不足的复合exo1突变体,我们提供了进一步的证据,证明Exo1p在MMR过程中发挥结构和催化作用。

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