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Selective modulation of the functions of a conserved DNA motor by a histone fold complex

机译:组蛋白折叠复合物选择性调节保守的DNA马达的功能

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摘要

Budding yeast Mph1 helicase and its orthologs drive multiple DNA transactions. Elucidating the mechanisms that regulate these motor proteins is central to understanding genome maintenance processes. Here, we show that the conserved histone fold MHF complex promotes Mph1-mediated repair of damaged replication forks but does not influence the outcome of DNA double-strand break repair. Mechanistically, scMHF relieves the inhibition imposed by the structural maintenance of chromosome protein Smc5 on Mph1 activities relevant to replication-associated repair through binding to Mph1 but not DNA. Thus, scMHF is a function-specific enhancer of Mph1 that enables flexible response to different genome repair situations.
机译:萌芽的酵母Mph1解旋酶及其直系同源基因驱动多个DNA事务。阐明调节这些运动蛋白的机制对于理解基因组维持过程至关重要。在这里,我们表明保守的组蛋白折叠MHF复合物促进受损的复制叉Mph1介导的修复,但不影响DNA双链断裂修复的结果。从机制上讲,scMHF通过与Mph1结合而不与DNA结合,减轻了染色体蛋白Smc5的结构维持对与复制相关修复有关的Mph1活性的抑制作用。因此,scMHF是Mph1的功能特定增强子,可对不同的基因组修复情况做出灵活的反应。

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