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首页> 外文期刊>Chemistry & biology >Structure-Based Dissection of the Active Site Chemistry of Leukotriene A4 Hydrolase: Implications for M1 Aminopeptidases and Inhibitor Design
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Structure-Based Dissection of the Active Site Chemistry of Leukotriene A4 Hydrolase: Implications for M1 Aminopeptidases and Inhibitor Design

机译:白三烯A4水解酶活性部位化学的基于结构的解剖:对M1氨基肽酶和抑制剂设计的影响。

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摘要

M1 aminopeptidases comprise a large family of biologically important zinc enzymes. We show that peptide turnover by the M1 prototype, leukotriene A4 hydrolase/aminopeptidase, involves a shift in substrate position associated with exchange of zinc coordinating groups, while maintaining the overall coordination geometry. The transition state is stabilized by residues conserved among M1 members and in the final reaction step, Glu-296 of the canonical zinc binding HEXXH motif shuffles a proton from the hydrolytic water to the leaving group. Tripeptide substrates bind along the conserved GXMEN motif, precisely occupying the distance between Glu-271 and Arg-563, whereas the Arg specificity is governed by a narrow S1 pocket capped with Asp-375. Our data provide detailed insights to the active site chemistry of M1 aminopeptidases and will aid in the development of novel enzyme inhibitors.
机译:M1氨基肽酶包含大量生物学上重要的锌酶。我们显示,由M1原型,白三烯A4水解酶/氨基肽酶产生的肽更新,涉及与锌配位基团交换相关的底物位置的变化,同时保持了整体配位的几何形状。过渡态由M1成员之间保守的残基稳定,在最后的反应步骤中,规范性锌键结合的HEXXH基序的Glu-296将质子从水解水中移至离去基团。三肽底物沿着保守的GXMEN基序结合,精确占据Glu-271和Arg-563之间的距离,而Arg特异性则由盖有Asp-375的狭窄S1口袋控制。我们的数据为M1氨基肽酶的活性位点化学提供了详细的见识,并将有助于新型酶抑制剂的开发。

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