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首页> 外文期刊>Structure >Crystal structure of the dinuclear zinc aminopeptidase PepV from Lactobacillus delbrueckii unravels its preference for dipeptides
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Crystal structure of the dinuclear zinc aminopeptidase PepV from Lactobacillus delbrueckii unravels its preference for dipeptides

机译:德氏乳杆菌的双核锌氨基肽酶PepV的晶体结构揭示了其对二肽的偏好

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摘要

PepV from Lactobacillus delbrueckii, a dinuclear zinc peptidase, has been characterized as an unspecific amino dipeptidase. The crystal structure of PepV in complex with the phosphinic inhibitor Asppsi[PO2CH2]AlaOH, a dipeptide substrate mimetic, reveals a "catalytic domain" and a "lid domain," which together form an internal active site cavity that traps the inhibitor. The catalytic domain is topologically similar to catalytic domains from amino- and carboxypeptidases. However, the lid domain is unique among the related enzymes. In contrast to the other related exopeptidases, PepV recognizes and fixes the dipeptide backbone, while the side chains are not specifically probed and can vary, rendering it a nonspecific dipeptidase. The cocrystallized inhibitor illustrates the two roles of the two catalytic zinc ions, namely stabilization of the tetrahedral intermediate and activation of the catalytic water molecule. [References: 36]
机译:来自德氏乳杆菌的PepV,一种双核锌肽酶,已被表征为一种非特异性的氨基二肽酶。 PepV的晶体结构与二肽底物模拟物次膦酸抑制剂Asppsi [PO2CH2] AlaOH形成复合物,揭示了“催化域”和“盖域”,它们共同形成了捕获抑制剂的内部活性位点腔。催化结构域在拓扑学上类似于来自氨基和羧肽酶的催化结构域。然而,在相关酶中,盖结构域是独特的。与其他相关的外肽酶相反,PepV识别并固定二肽主链,而侧链没有被特异性探测并且可以变化,从而使其成为非特异性二肽酶。共结晶抑制剂说明了两个催化锌离子的两个作用,即四面体中间体的稳定和催化水分子的活化。 [参考:36]

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