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DNA聚合酶μ参与哺乳动物细胞中特定类型DNA双链断裂的修复。

Involvement of DNA polymerase mu in the repair of a specific subset of DNA double-strand breaks in mammalian cells.

作者信息

Capp Jean-Pascal, Boudsocq François, Besnard Anne-Gaelle, Lopez Bernard S, Cazaux Christophe, Hoffmann Jean-Sébastien, Canitrot Yvan

机构信息

Genetic instability and Cancer group, Institute of Pharmacology and Structural Biology, University Paul Sabatier, UMR CNRS 5089, 205 route de Narbonne, 31077 Toulouse cedex, France.

出版信息

Nucleic Acids Res. 2007;35(11):3551-60. doi: 10.1093/nar/gkm243. Epub 2007 May 5.

Abstract

The repair of DNA double-strand breaks (DSB) requires processing of the broken ends to complete the ligation process. Recently, it has been shown that DNA polymerase mu (polmu) and DNA polymerase lambda (pollambda) are both involved in such processing during non-homologous end joining in vitro. However, no phenotype was observed in animal models defective for either polmu and/or pollambda. Such observations could result from a functional redundancy shared by the X family of DNA polymerases. To avoid such redundancy and to clarify the role of polmu in the end joining process, we generated cells over-expressing the wild type as well as an inactive form of polmu (polmuD). We observed that cell sensitivity to ionizing radiation (IR) was increased when either polmu or polmuD was over-expressed. However, the genetic instability in response to IR increased only in cells expressing polmuD. Moreover, analysis of intrachromosomal repair of the I-SceI-induced DNA DSB, did not reveal any effect of either polmu or polmuD expression on the efficiency of ligation of both cohesive and partially complementary ends. Finally, the sequences of the repaired ends were specifically affected when polmu or polmuD was over-expressed, supporting the hypothesis that polmu could be involved in the repair of a DSB subset when resolution of junctions requires some gap filling.

摘要

DNA双链断裂(DSB)的修复需要对断裂末端进行加工以完成连接过程。最近的研究表明,DNA聚合酶μ(polμ)和DNA聚合酶λ(polλ)在体外非同源末端连接过程中均参与此类加工。然而,在polμ和/或polλ缺陷的动物模型中未观察到任何表型。此类观察结果可能源于DNA聚合酶X家族共有的功能冗余。为避免这种冗余并阐明polμ在末端连接过程中的作用,我们构建了过表达野生型以及无活性形式的polμ(polμD)的细胞。我们观察到,当polμ或polμD过表达时,细胞对电离辐射(IR)的敏感性增加。然而,仅在表达polμD的细胞中,对IR的遗传不稳定性增加。此外,对I-SceI诱导的DNA DSB进行的染色体内修复分析未发现polμ或polμD的表达对粘性末端和部分互补末端连接效率有任何影响。最后,当polμ或polμD过表达时,修复末端的序列受到特异性影响,这支持了以下假设:当连接点的解析需要一些缺口填补时,polμ可能参与DSB子集的修复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02c2/1920243/0f977e033146/gkm243f1.jpg

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