人类核酸外切酶1与BLM解旋酶相互作用以切除DNA并启动DNA修复。

Human exonuclease 1 and BLM helicase interact to resect DNA and initiate DNA repair.

作者信息

Nimonkar Amitabh V, Ozsoy A Zeynep, Genschel Jochen, Modrich Paul, Kowalczykowski Stephen C

机构信息

Department of Microbiology, University of California, Davis, CA 95616, USA.

出版信息

Proc Natl Acad Sci U S A. 2008 Nov 4;105(44):16906-11. doi: 10.1073/pnas.0809380105. Epub 2008 Oct 29.

Abstract

The error-free repair of double-stranded DNA breaks by homologous recombination requires processing of broken ends. These processed ends are substrates for assembly of DNA strand exchange proteins that mediate DNA strand invasion. Here, we establish that human BLM helicase, a member of the RecQ family, stimulates the nucleolytic activity of human exonuclease 1 (hExo1), a 5'-->3' double-stranded DNA exonuclease. The stimulation is specific because other RecQ homologs fail to stimulate hExo1. Stimulation of DNA resection by hExo1 is independent of BLM helicase activity and is, instead, mediated by an interaction between the 2 proteins. Finally, we show that DNA ends resected by hExo1 and BLM are used by human Rad51, but not its yeast or bacterial counterparts, to promote homologous DNA pairing. This in vitro system recapitulates initial steps of homologous recombination and provides biochemical evidence for a role of BLM and Exo1 in the initiation of recombinational DNA repair.

摘要

通过同源重组实现双链DNA断裂的无差错修复需要对断裂末端进行加工处理。这些经过加工的末端是介导DNA链侵入的DNA链交换蛋白组装的底物。在此,我们证实人类BLM解旋酶(RecQ家族成员)可刺激人类核酸外切酶1(hExo1,一种5'→3'双链DNA核酸外切酶)的核酸水解活性。这种刺激具有特异性,因为其他RecQ同源物无法刺激hExo1。hExo1对DNA切除的刺激不依赖于BLM解旋酶活性,而是由这两种蛋白质之间的相互作用介导。最后,我们表明,hExo1和BLM切除的DNA末端可被人类Rad51利用,促进同源DNA配对,而酵母或细菌的Rad51则不能。这个体外系统概括了同源重组的初始步骤,并为BLM和Exo1在重组DNA修复起始过程中的作用提供了生化证据。

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