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Mutations in two Ku homologs define a DNA end-joining repair pathway in Saccharomyces cerevisiae.

机译:两个Ku同源物中的突变定义了酿酒酵母中的DNA末端连接修复途径。

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摘要

DNA double-strand break (DSB) repair in mammalian cells is dependent on the Ku DNA binding protein complex. However, the mechanism of Ku-mediated repair is not understood. We discovered a Saccharomyces cerevisiae gene (KU80) that is structurally similar to the 80-kDa mammalian Ku subunit. Ku8O associates with the product of the HDF1 gene, forming the major DNA end-binding complex of yeast cells. DNA end binding was absent in ku80delta, hdf1delta, or ku80delta hdf1delta strains. Antisera specific for epitope tags on Ku80 and Hdf1 were used in supershift and immunodepletion experiments to show that both proteins are directly involved in DNA end binding. In vivo, the efficiency of two DNA end-joining processes were reduced >10-fold in ku8Odelta, hdfldelta, or ku80delta hdf1delta strains: repair of linear plasmid DNA and repair of an HO endonuclease-induced chromosomal DSB. These DNA-joining defects correlated with DNA damage sensitivity, because ku80delta and hdf1delta strains were also sensitive to methylmethane sulfonate (MMS). Ku-dependent repair is distinct from homologous recombination, because deletion of KU80 and HDF1 increased the MMS sensitivity of rad52delta. Interestingly, rad5Odelta, also shown here to be defective in end joining, was epistatic with Ku mutations for MMS repair and end joining. Therefore, Ku and Rad50 participate in an end-joining pathway that is distinct from homologous recombinational repair. Yeast DNA end joining is functionally analogous to DSB repair and V(D)J recombination in mammalian cells.
机译:哺乳动物细胞中的DNA双链断裂(DSB)修复取决于Ku DNA结合蛋白复合物。但是,Ku介导的修复机制尚不清楚。我们发现了一个酿酒酵母基因(KU80),其结构类似于80 kDa的哺乳动物Ku亚基。 Ku8O与HDF1基因的产物结合,形成酵母细胞的主要DNA末端结合复合物。在ku80delta,hdf1delta或ku80delta hdf1delta菌株中不存在DNA末端结合。对Ku80和Hdf1上的表位标签具有特异性的抗血清用于超移位和免疫耗竭实验中,以显示这两种蛋白都直接参与DNA末端结合。在体内,在ku8Odelta,hdfldelta或ku80delta hdf1delta菌株中,两个DNA末端连接过程的效率降低了> 10倍:线性质粒DNA的修复和HO内切核酸酶诱导的染色体DSB的修复。这些DNA连接缺陷与DNA损伤敏感性相关,因为ku80delta和hdf1delta菌株也对甲基磺酸甲酯(MMS)敏感。 Ku依赖性修复不同于同源重组,因为KU80和HDF1的缺失增加了rad52delta的MMS敏感性。有趣的是,rad5Odelta(也显示在末端连接中有缺陷)是上位性的,带有Ku突变,用于MMS修复和末端连接。因此,Ku和Rad50参与了不同于同源重组修复的末端连接途径。酵母DNA末端连接在功能上类似于哺乳动物细胞中的DSB修复和V(D)J重组。

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