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Structure and stereochemistry of the base excision repair glycosylase MutY reveal a mechanism similar to retaining glycosidases

机译:碱基切除修复糖基化酶MutY的结构和立体化学揭示了与保留糖苷酶相似的机制

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摘要

MutY adenine glycosylases prevent DNA mutations by excising adenine from promutagenic 8-oxo-7,8-dihydroguanine (OG):A mismatches. Here, we describe structural features of the MutY active site bound to an azaribose transition state analog which indicate a catalytic role for Tyr126 and approach of the water nucleophile on the same side as the departing adenine base. The idea that Tyr126 participates in catalysis, recently predicted by modeling calculations, is strongly supported by mutagenesis and by seeing close contact between the hydroxyl group of this residue and the azaribose moiety of the transition state analog. NMR analysis of MutY methanolysis products corroborates a mechanism for adenine removal with retention of stereochemistry. Based on these results, we propose a revised mechanism for MutY that involves two nucleophilic displacement steps akin to the mechanisms accepted for 'retaining' O-glycosidases. This new-for-MutY yet familiar mechanism may also be operative in related base excision repair glycosylases and provides a critical framework for analysis of human MutY (MUTYH) variants associated with inherited colorectal cancer.
机译:MutY腺嘌呤糖基化酶通过从促突变的8-oxo-7,8-dihydroguanine(OG):A错配中切除腺嘌呤来防止DNA突变。在这里,我们描述了MutY活性位点结合到一个azaribose过渡态类似物的结构特征,这表明Tyr126的催化作用和水亲核试剂与即将离开的腺嘌呤碱基在同一侧的方法。最近通过模型计算预测到的Tyr126参与催化的想法得到了诱变的支持,并通过看到该残基的羟基与过渡态类似物的阿扎立比糖部分之间的紧密接触得到了有力支持。 MutY甲醇分解产物的NMR分析证实了保留立体化学的腺嘌呤去除机理。基于这些结果,我们提出了MutY的修订机制,其中涉及两个亲核置换步骤,类似于“保留” O-糖苷酶的机制。这种新的但仍很熟悉的机制也可能在相关的碱基切除修复糖基化酶中起作用,并为分析与遗传性结直肠癌相关的人类MutY(MUTYH)变体提供了关键框架。

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