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Mre11核酸酶二聚体对DNA末端的识别:对受损DNA切除与修复的见解

DNA end recognition by the Mre11 nuclease dimer: insights into resection and repair of damaged DNA.

作者信息

Sung Sihyun, Li Fuyang, Park Young Bong, Kim Jin Seok, Kim Ae-Kyoung, Song Ok-Kyu, Kim Jiae, Che Jun, Lee Sang Eun, Cho Yunje

机构信息

Department of Life Sciences, Pohang University of Science and Technology, Pohang, South Korea.

Department of Molecular Medicine, Institute of Biotechnology, University of Texas Health Science Center at San Antonio, San Antonio, TX, USA Department of Radiation Oncology, University of Texas Health Science Center at San Antonio, San Antonio, TX, USA.

出版信息

EMBO J. 2014 Oct 16;33(20):2422-35. doi: 10.15252/embj.201488299. Epub 2014 Aug 8.

Abstract

The Mre11-Rad50-Nbs1 (MRN) complex plays important roles in sensing DNA damage, as well as in resecting and tethering DNA ends, and thus participates in double-strand break repair. An earlier structure of Mre11 bound to a short duplex DNA molecule suggested that each Mre11 in a dimer recognizes one DNA duplex to bridge two DNA ends at a short distance. Here, we provide an alternative DNA recognition model based on the structures of Methanococcus jannaschii Mre11 (MjMre11) bound to longer DNA molecules, which may more accurately reflect a broken chromosome. An extended stretch of B-form DNA asymmetrically runs across the whole dimer, with each end of this DNA molecule being recognized by an individual Mre11 monomer. DNA binding induces rigid-body rotation of the Mre11 dimer, which could facilitate melting of the DNA end and its juxtaposition to an active site of Mre11. The identified Mre11 interface binding DNA duplex ends is structurally conserved and shown to functionally contribute to efficient resection, non-homologous end joining, and tolerance to DNA-damaging agents when other resection enzymes are absent. Together, the structural, biochemical, and genetic findings presented here offer new insights into how Mre11 recognizes damaged DNA and facilitates DNA repair.

摘要

Mre11-Rad50-Nbs1(MRN)复合物在感知DNA损伤以及切除和连接DNA末端方面发挥着重要作用,因此参与双链断裂修复。先前Mre11与短双链DNA分子结合的结构表明,二聚体中的每个Mre11识别一个DNA双链体,以在短距离内桥接两个DNA末端。在这里,我们基于詹氏甲烷球菌Mre11(MjMre11)与更长DNA分子结合的结构提供了一种替代的DNA识别模型,该模型可能更准确地反映断裂的染色体。一段延伸的B型DNA不对称地穿过整个二聚体,该DNA分子的每个末端被单个Mre11单体识别。DNA结合诱导Mre11二聚体的刚体旋转,这可能有助于DNA末端的解链及其与Mre11活性位点的并置。所鉴定的结合DNA双链体末端的Mre11界面在结构上是保守的,并且当不存在其他切除酶时,在功能上有助于有效的切除、非同源末端连接以及对DNA损伤剂的耐受性。总之,这里呈现的结构、生化和遗传学发现为Mre11如何识别受损DNA并促进DNA修复提供了新的见解。

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