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Single-Molecule Analysis Reveals the Kinetics and Physiological Relevance of MutL-ssDNA Binding

机译:单分子分析揭示了MutL-ssDNA结合的动力学和生理相关性

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摘要

DNA binding by MutL homologs (MLH/PMS) during mismatch repair (MMR) has been considered based on biochemical and genetic studies. Bulk studies with MutL and its yeast homologs Mlh1-Pms1 have suggested an integral role for a single-stranded DNA (ssDNA) binding activity during MMR. We have developed single-molecule Förster resonance energy transfer (smFRET) and a single-molecule DNA flow-extension assays to examine MutL interaction with ssDNA in real time. The smFRET assay allowed us to observe MutL-ssDNA association and dissociation. We determined that MutL-ssDNA binding required ATP and was the greatest at ionic strength below 25 mM (KD = 29 nM) while it dramatically decreases above 100 mM (KD>2 µM). Single-molecule DNA flow-extension analysis suggests that multiple MutL proteins may bind ssDNA at low ionic strength but this activity does not enhance stability at elevated ionic strengths. These studies are consistent with the conclusion that a stable MutL-ssDNA interaction is unlikely to occur at physiological salt eliminating a number of MMR models. However, the activity may infer some related dynamic DNA transaction process during MMR.
机译:根据生化和遗传研究,已经考虑了错配修复(MMR)过程中MutL同源物(MLH / PMS)的DNA结合。对MutL及其酵母同源物Mlh1-Pms1的大量研究表明,MMR过程中单链DNA(ssDNA)结合活性具有不可或缺的作用。我们已经开发了单分子Förster共振能量转移(smFRET)和单分子DNA流动扩展测定法,以实时检查MutL与ssDNA的相互作用。 smFRET分析使我们能够观察MutL-ssDNA的缔合和解离。我们确定MutL-ssDNA结合需要ATP,并且在离子强度低于25 mM时最大(KD = 29 nM),而在100 mM以上时急剧下降(KD> 2 µM)。单分子DNA流动扩展分析表明,多种MutL蛋白可能以低离子强度结合ssDNA,但这种活性并不能增强离子强度升高时的稳定性。这些研究与结论是一致的,即在消除多种MMR模型的生理食盐下不太可能发生稳定的MutL-ssDNA相互作用的结论。但是,该活动可能会推断MMR期间一些相关的动态DNA交易过程。

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