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Insights into the mechanism of Rad51 recombinase from the structure and properties of a filament interface mutant

机译:从细丝界面突变体的结构和性质了解Rad51重组酶的机制

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摘要

Rad51 protein promotes homologous recombination in eukaryotes. Recombination activities are activated by Rad51 filament assembly on ssDNA. Previous studies of yeast Rad51 showed that His352 occupies an important position at the filament interface, where it could relay signals between subunits and active sites. To investigate, we characterized yeast Rad51 H352A and H352Y mutants, and solved the structure of H352Y. H352A forms catalytically competent but salt-labile complexes on ssDNA. In contrast, H352Y forms salt-resistant complexes on ssDNA, but is defective in nucleotide exchange, RPA displacement and strand exchange with full-length DNA substrates. The 2.5 Å crystal structure of H352Y reveals a right-handed helical filament in a high-pitch (130 Å) conformation with P61 symmetry. The catalytic core and dimer interface regions of H352Y closely resemble those of DNA-bound Escherichia coli RecA protein. The H352Y mutation stabilizes Phe187 from the adjacent subunit in a position that interferes with the γ-phosphate-binding site of the Walker A motif/P-loop, potentially explaining the limited catalysis observed. Comparison of Rad51 H352Y, RecA–DNA and related structures reveals that the presence of bound DNA correlates with the isomerization of a conserved cis peptide near Walker B to the trans configuration, which appears to prime the catalytic glutamate residue for ATP hydrolysis.
机译:Rad51蛋白可促进真核生物中的同源重组。通过ssDNA上的Rad51细丝装配激活重组活性。以前对酵母Rad51的研究表明,His352在细丝界面上占据重要位置,在该位置可以中继亚基和活性位点之间的信号。为了调查,我们表征了酵母Rad51 H352A和H352Y突变体,并解决了H352Y的结构。 H352A在ssDNA上形成催化活性但盐不稳定的复合物。相反,H352Y在ssDNA上形成抗盐复合物,但在核苷酸交换,RPA置换和与全长DNA底物的链交换方面存在缺陷。 H352Y的2.5Å晶体结构显示出右旋螺旋丝,呈高节距(130Å)构型,具有P61对称性。 H352Y的催化核心和二聚体界面区域非常类似于结合DNA的大肠杆菌RecA蛋白。 H352Y突变使邻近亚基的Phe187稳定在干扰Walker A基序/ P环的γ-磷酸结合位点的位置,可能解释了所观察到的有限催化作用。 Rad51 H352Y,RecA-DNA及其相关结构的比较表明,结合的DNA的存在与Walker B附近保守的顺式肽异构化为反式构型有关,这似乎引发了ATP水解的催化谷氨酸残基。

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