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人源 MUS81-EME2 可以切割多种 DNA 结构,包括完整的 Holliday 连接点和缺口双链。

Human MUS81-EME2 can cleave a variety of DNA structures including intact Holliday junction and nicked duplex.

机构信息

Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon 305-701, Korea.

Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon 305-701, Korea

出版信息

Nucleic Acids Res. 2014 May;42(9):5846-62. doi: 10.1093/nar/gku237. Epub 2014 Apr 1.

Abstract

MUS81 shares a high-degree homology with the catalytic XPF subunit of the XPF-ERCC1 endonuclease complex. It is catalytically active only when complexed with the regulatory subunits Mms4 or Eme1 in budding and fission yeasts, respectively, and EME1 or EME2 in humans. Although Mus81 complexes are implicated in the resolution of recombination intermediates in vivo, recombinant yeast Mus81-Mms4 and human MUS81-EME1 isolated from Escherichia coli fail to cleave intact Holliday junctions (HJs) in vitro. In this study, we show that human recombinant MUS81-EME2 isolated from E. coli cleaves HJs relatively efficiently, compared to MUS81-EME1. Furthermore, MUS81-EME2 catalyzed cleavage of nicked and gapped duplex deoxyribonucleic acids (DNAs), generating double-strand breaks. The presence of a 5' phosphate terminus at nicks and gaps rendered DNA significantly less susceptible to the cleavage by MUS81-EME2 than its absence, raising the possibility that this activity could play a role in channeling damaged DNA duplexes that are not readily repaired into the recombinational repair pathways. Significant differences in substrate specificity observed with unmodified forms of MUS81-EME1 and MUS81-EME2 suggest that they play related but non-overlapping roles in DNA transactions.

摘要

MUS81 与 XPF-ERCC1 内切酶复合物的催化亚基 XPF 具有高度同源性。在芽殖酵母和裂殖酵母中,它只有与调节亚基 Mms4 或 Eme1 分别复合时才具有催化活性,而在人类中则与 EME1 或 EME2 复合。尽管 Mus81 复合物被认为参与了体内重组中间体的解决,但从大肠杆菌中分离出的重组酵母 Mus81-Mms4 和人 MUS81-EME1 未能在体外切割完整的 Holliday 连接(HJs)。在这项研究中,我们表明,从大肠杆菌中分离出的人重组 MUS81-EME2 比 MUS81-EME1 更有效地切割 HJs。此外,MUS81-EME2 催化切口和缺口双链脱氧核糖核酸(DNA)的切割,产生双链断裂。在切口和缺口处存在 5'磷酸末端会使 DNA 对 MUS81-EME2 的切割明显降低,这增加了这种活性可能在将不易修复的受损 DNA 双链引导到重组修复途径中的作用的可能性。MUS81-EME1 和 MUS81-EME2 的未修饰形式观察到的底物特异性的显著差异表明它们在 DNA 转导中发挥相关但不重叠的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f60a/4027171/26b3790b5407/gku237fig1.jpg

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