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谷氨酰氨基次膦酸肽对锌氨肽酶A(EC 3.4.11.7,APA)的强效选择性抑制作用:P1位谷氨酰氨基次膦酸残基的重要性

Potent and selective inhibition of zinc aminopeptidase A (EC 3.4.11.7, APA) by glutamyl aminophosphinic peptides: importance of glutamyl aminophosphinic residue in the P1 position.

作者信息

Georgiadis D, Vazeux G, Llorens-Cortes C, Yiotakis A, Dive V

机构信息

Department of Chemistry, Laboratory of Organic Chemistry, University of Athens, Panepistiomiopolis, Zografou, Athens, Greece.

出版信息

Biochemistry. 2000 Feb 8;39(5):1152-5. doi: 10.1021/bi9922345.

Abstract

Through the development of a new chemical strategy, aminophosphinic peptides containing a pseudoglutamyl residue (Glu Psi(PO2-CH2)Leu-Xaa) in the N-terminal position were synthesized and evaluated as inhibitors of aminopeptidase A (APA). The most potent inhibitor developed in this study, Glu Psi(PO2-CH2)Leu-Ala, displayed a Ki value of 0.8 nM for APA, but was much less effective in blocking aminopeptidase N (APN) (Ki = 31 microM). The critical role of the glutamyl residue in this phosphinic peptide, both in potency and selectivity, is exemplified by the P1 position analogue, Ala Psi(PO2-CH2)Leu-Ala, which exhibited a Ki value of 0.9 microM toward APA but behaved as a rather potent inhibitor of APN (Ki = 25 nM). Glu Psi(PO2-CH2)Leu-Xaa peptides are poor inhibitors of angiotensin converting enzyme (Ki values higher than 1 microM). Depending on the nature of the Xaa residue, the potency of these phosphinic peptides toward neutral endopeptidase 24-11 varied from 50 nM to 3 microM. In view of the in vivo role of APA in the formation of brain angiotensin III, one of the main effector peptides of the renin angiotensin system in the central nervous system, highly potent and selective inhibitors of APA may find important therapeutic applications soon.

摘要

通过开发一种新的化学策略,合成了在N端位置含有假谷氨酰残基(Glu Psi(PO2-CH2)Leu-Xaa)的氨基次膦酸肽,并将其作为氨肽酶A(APA)的抑制剂进行了评估。本研究中开发的最有效的抑制剂Glu Psi(PO2-CH2)Leu-Ala对APA的Ki值为0.8 nM,但在阻断氨肽酶N(APN)方面效果要差得多(Ki = 31 microM)。这种次膦酸肽中谷氨酰残基在效力和选择性方面的关键作用,通过P1位类似物Ala Psi(PO2-CH2)Leu-Ala得到体现,它对APA的Ki值为0.9 microM,但却是APN的一种相当有效的抑制剂(Ki = 25 nM)。Glu Psi(PO2-CH2)Leu-Xaa肽是血管紧张素转换酶的低效抑制剂(Ki值高于1 microM)。根据Xaa残基的性质,这些次膦酸肽对中性内肽酶24-11的效力在50 nM至3 microM之间变化。鉴于APA在脑内血管紧张素III形成中的体内作用,血管紧张素III是中枢神经系统肾素-血管紧张素系统的主要效应肽之一,高效且选择性的APA抑制剂可能很快会有重要的治疗应用。

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