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Structure of human aspartyl aminopeptidase complexed with substrate analogue: insight into catalytic mechanism, substrate specificity and M18 peptidase family.

机译:人天冬氨酰氨肽酶与底物类似物复合的结构:深入了解催化机制,底物特异性和M18肽酶家族。

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摘要

BACKGROUND: Aspartyl aminopeptidase (DNPEP), with specificity towards an acidic amino acid at the N-terminus, is the only mammalian member among the poorly understood M18 peptidases. DNPEP has implicated roles in protein and peptide metabolism, as well as the renin-angiotensin system in blood pressure regulation. Despite previous enzyme and substrate characterization, structural details of DNPEP regarding ligand recognition and catalytic mechanism remain to be delineated. RESULTS: The crystal structure of human DNPEP complexed with zinc and a substrate analogue aspartate-β-hydroxamate reveals a dodecameric machinery built by domain-swapped dimers, in agreement with electron microscopy data. A structural comparison with bacterial homologues identifies unifying catalytic features among the poorly understood M18 enzymes. The bound ligands in the active site also reveal the coordination mode of the binuclear zinc centre and a substrate specificity pocket for acidic amino acids. CONCLUSIONS: The DNPEP structure provides a molecular framework to understand its catalysis that is mediated by active site loop swapping, a mechanism likely adopted in other M18 and M42 metallopeptidases that form dodecameric complexes as a self-compartmentalization strategy. Small differences in the substrate binding pocket such as shape and positive charges, the latter conferred by a basic lysine residue, further provide the key to distinguishing substrate preference. Together, the structural knowledge will aid in the development of enzyme-/family-specific aminopeptidase inhibitors.
机译:背景:天冬氨酰氨肽酶(DNPEP)对N端的酸性氨基酸具有特异性,是人们对M18肽酶缺乏了解的唯一哺乳动物成员。 DNPEP与蛋白质和肽代谢以及肾素-血管紧张素系统在血压调节中的作用有关。尽管以前有酶和底物的表征,关于配体识别和催化机理的DNPEP的结构细节仍有待描述。结果:与锌和底物类似物天冬氨酸-β-异羟肟酸酯复合的人DNPEP的晶体结构揭示了由域交换二聚体构建的十二聚体,与电子显微镜数据一致。与细菌同源物的结构比较确定了人们所了解的M18酶之间的统一催化特征。活性位点中结合的配体还揭示了双核锌中心的配位模式和酸性氨基酸的底物特异性口袋。结论:DNPEP结构提供了一个分子框架来了解其催化作用,该催化作用是由活性位点环交换介导的,该机制可能在其他形成十二聚体复合物的M18和M42金属肽酶中作为自我隔离策略而采用。底物结合口袋中的微小差异(例如形状和正电荷,后者由碱性赖氨酸残基赋予),为区分底物偏好提供了关键。总之,结构知识将有助于酶/家族特异性氨基肽酶抑制剂的开发。

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