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Distinct roles of two separable in vitro activities of yeast Mre11 in mitotic and meiotic recombination.

机译:截然不同的两个分离体外的角色酵母Mre11活动在有丝分裂和减数分裂重组。

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In Saccharomyces cerevisiae, Mre11 protein is involved in both double-strand DNA break (DSB) repair and meiotic DSB formation. Here, we report the correlation of nuclease and DNA-binding activities of Mre11 with its functions in DNA repair and meiotic DSB formation. Purified Mre11 bound to DNA efficiently and was shown to have Mn2+-dependent nuclease activities. A point mutation in the N-terminal phosphoesterase motif (Mre11D16A) resulted in the abolition of nuclease activities but had no significant effect on DNA binding. The wild-type level of nuclease activity was detected in a C-terminal truncated protein (Mre11DeltaC49), although it had reduced DNA-binding activity. Phenotypes of the corresponding mutations were also analyzed. The mre11D16A mutation conferred methyl methanesulfonate-sensitivity to mitotic cells and caused the accumulation of unprocessed meiotic DSBs. The mre11DeltaC49 mutant exhibited almost wild-type phenotypes in mitosis. However, in meiosis, no DSB formation could be detected and an aberrant chromatin configuration was observed at DSB sites in the mre11DeltaC49 mutant. These results indicate that Mre11 has two separable functional domains: the N-terminal nuclease domain required for DSB repair, and the C-terminal dsDNA-binding domain essential to its meiotic functions such as chromatin modification and DSB formation. Keywords: DNA binding/double-strand break repair/DSB formation/Mre11/nuclease
机译:在酿酒酵母,Mre11蛋白质参与DNA双链断裂(双边带)修复和减数分裂双边带的形成。核酸酶和dna结合蛋白的相关性Mre11活动功能的DNA修复和减数分裂双边带的形成。绑定到DNA高效和显示Mn2 +端依赖核酸酶的活动。突变氨基磷酸酯酶的主题(Mre11D16A)导致废除核酸酶但是没有显著影响DNA的活动绑定。在c端截短蛋白被发现(Mre11DeltaC49),尽管它降低了dna结合活性。相应的突变也进行了分析。mre11D16A突变赋予甲基methanesulfonate-sensitivity有丝分裂细胞未加工的减数分裂的积累造成的双边带。在有丝分裂野生型表型。减数分裂,没有双边带可以检测并形成观察一个异常的染色质配置在双边带网站mre11DeltaC49突变。结果表明,Mre11有两个分离功能域:氨基核酸酶双边带修复所需的域,c端dsDNA-binding域对其至关重要减数分裂染色质的修改等功能和双边带的形成。双链断裂修复/双边带具有约束力形成/ Mre11 /核酸酶

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