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通过单链退火在体外重新连接DNA双链断裂

Rejoining of DNA double-strand breaks in vitro by single-strand annealing.

作者信息

Göttlich B, Reichenberger S, Feldmann E, Pfeiffer P

机构信息

Institut für Zellbiologie des Universitätsklinikums Essen, Germany.

出版信息

Eur J Biochem. 1998 Dec 1;258(2):387-95. doi: 10.1046/j.1432-1327.1998.2580387.x.

Abstract

Nonhomologous DNA end joining (NHEJ) is considered the major pathway of double-strand break (DSB) repair in vertebrate cells. Various studies indicated the existence of at least two different NHEJ pathways; one that joins DNA ends accurately and depends on Ku, a protein heterodimer that binds to DNA ends, and one that generates deletions and is independent of Ku. While the former pathway has been characterised in some detail, only little is known about the latter error-prone. We have partially purified such an NHEJ activity from extracts of Xenopus laevis eggs. End-joined junctions formed in the most extensively purified protein fraction displayed deletions containing short patches of sequence homology at their break points, a feature characteristic of single-strand annealing (SSA). Detailed biochemical characterisation revealed the presence of DNA ligase III, DNA polymerase epsilon, FEN-1 endonuclease, and exonuclease activities of 5'-3' and 3'-5' directionality. We show that these activities are able to correctly process proposed intermediates of SSA. Interestingly, neither Ku nor the associated DNA-dependent protein kinase were detected, indicating that the mechanism can dispense with Ku. Our findings provide evidence for the existence of an error-prone NHEJ pathway that creates deletions by microhomology-driven SSA.

摘要

非同源DNA末端连接(NHEJ)被认为是脊椎动物细胞中双链断裂(DSB)修复的主要途径。各种研究表明至少存在两种不同的NHEJ途径;一种途径能够精确连接DNA末端,依赖于Ku,一种与DNA末端结合的蛋白质异二聚体,另一种途径会产生缺失且不依赖于Ku。虽然前一种途径已得到一定程度的详细表征,但对于后一种易出错的途径却知之甚少。我们已经从非洲爪蟾卵提取物中部分纯化了这样一种NHEJ活性。在纯化程度最高的蛋白质组分中形成的末端连接接头在其断裂点处显示出含有短序列同源片段的缺失,这是单链退火(SSA)的一个特征。详细的生化表征揭示了DNA连接酶III、DNA聚合酶ε、FEN-1核酸内切酶以及5'-3'和3'-5'方向性的核酸外切酶活性的存在。我们表明这些活性能够正确处理所提出的SSA中间体。有趣的是,未检测到Ku或相关的DNA依赖性蛋白激酶,这表明该机制可以不依赖Ku。我们的研究结果为存在一种通过微同源性驱动的SSA产生缺失的易出错NHEJ途径提供了证据。

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