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结构洞察氨肽酶 A 的催化机制和抑制剂结合。

Structural insight into the catalytic mechanism and inhibitor binding of aminopeptidase A.

机构信息

College de France, Laboratory of Central Neuropeptides in the Regulation of Body Fluid Homeostasis and Cardiovascular Functions, Center for Interdisciplinary Research in Biology (CIRB), Paris F-75005, France.

INSERM, U1050, Paris F-75005, France.

出版信息

Biochem J. 2020 Nov 13;477(21):4133-4148. doi: 10.1042/BCJ20200307.

Abstract

Aminopeptidase A (APA) is a membrane-bound monozinc aminopeptidase. In the brain, APA generates angiotensin III which exerts a tonic stimulatory effect on the control of blood pressure (BP) in hypertensive animals. The oral administration of RB150 renamed firibastat by WHO, an APA inhibitor prodrug, targeting only the S1 subsite, decreases BP in hypertensive patients from various ethnic origins. To identify new families of potent and selective APA inhibitors, we explored the organization of the APA active site, especially the S2' subsite. By molecular modeling, docking, molecular dynamics simulations and site-directed mutagenesis, we revealed that Arg368 and Arg386, in the S2' subsite of human APA established various types of interactions in major part with the P2' residue but also with the P1' residue of APA inhibitors, required for their nanomolar inhibitory potency. We also demonstrated an important role for Arg368 in APA catalysis, in maintaining the structural integrity of the GAMEN motif, a conserved sequence involved in exopeptidase specificity and optimal positioning of the substrate in monozinc aminopeptidases. This arginine together with the GAMEN motif are key players for the catalytic mechanism of these enzymes.

摘要

氨肽酶 A(APA)是一种膜结合的单锌氨肽酶。在大脑中,APA 生成血管紧张素 III,对高血压动物的血压(BP)控制产生紧张性刺激作用。WHO 将 APA 抑制剂前药 RB150(重新命名为 firibastat)的口服给药,针对 S1 亚位点,可降低来自不同种族的高血压患者的血压。为了鉴定新的强效和选择性 APA 抑制剂家族,我们探索了 APA 活性位点的组织,特别是 S2'亚位点。通过分子建模、对接、分子动力学模拟和定点突变,我们揭示了人 APA 的 S2'亚位点中的 Arg368 和 Arg386 与 APA 抑制剂的 P2'残基建立了各种类型的相互作用,但也与 P1'残基建立了相互作用,这对于它们的纳摩尔抑制效力是必需的。我们还证明了 Arg368 在 APA 催化中在维持 GAMEN 基序的结构完整性方面的重要作用,GAMEN 基序是涉及外肽酶特异性和单锌氨肽酶中底物最佳定位的保守序列。这个精氨酸与 GAMEN 基序一起是这些酶的催化机制的关键因素。

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