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D-、D-二肽的次膦酸酯类似物:迟缓结合抑制作用以及对VanX的蛋白水解保护作用,VanX是粪肠球菌中耐万古霉素所需的一种D-、D-二肽酶。

Phosphinate analogs of D-, D-dipeptides: slow-binding inhibition and proteolysis protection of VanX, a D-, D-dipeptidase required for vancomycin resistance in Enterococcus faecium.

作者信息

Wu Z, Walsh C T

机构信息

Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Proc Natl Acad Sci U S A. 1995 Dec 5;92(25):11603-7. doi: 10.1073/pnas.92.25.11603.

Abstract

VanX is a D-Ala-D-Ala dipeptidase that is essential for vancomycin resistance in Enterococcus faecium. Contrary to most proteases and peptidases, it prefers to hydrolyze the amino substrate but not the related kinetically and thermodynamically more favorable ester substrate D-Ala-D-lactate. The enzymatic activity of VanX was previously found to be inhibited by the phosphinate analogs of the proposed tetrahedral intermediate for hydrolysis of D-Ala-D-Ala. Here we report that such phosphinates are slow-binding inhibitors. D-3-[(1-Aminoethyl)phosphinyl]-D-2-methylpropionic acid I showed a time-dependent onset of inhibition of VanX and a time-dependent return to uninhibited steady-state rates upon dilution of the enzyme/inhibitor mixture. The initial inhibition constant Ki after immediate addition of VanX to phosphinate I to form the E-I complex is 1.5 microM but is then lowered by a relatively slow isomerization step to a second complex, E-I*, with a final Ki of 0.47 microM. This slow-binding inhibition reflects a Km/Ki ratio of 2900:1. The rate constant for the slow dissociation of complex E-I* is 0.24 min-1. A phosphinate analog with an ethyl group replacing what would be the side chain of the second D-alanyl residue in the normal tetrahedral adduct gives a K*i value of 90 nM. Partial proteolysis of VanX reveals two protease-sensitive loop regions that are protected by the intermediate analog phosphinate, indicating that they may be part of the VanX active site.

摘要

VanX是一种D-Ala-D-Ala二肽酶,对粪肠球菌的万古霉素耐药性至关重要。与大多数蛋白酶和肽酶不同,它更倾向于水解氨基底物,而不是动力学和热力学上更有利的相关酯底物D-Ala-D-乳酸。先前发现VanX的酶活性受到拟用于D-Ala-D-Ala水解的四面体中间体的次膦酸酯类似物的抑制。在此我们报告,此类次膦酸酯是慢结合抑制剂。D-3-[(1-氨基乙基)膦酰基]-D-2-甲基丙酸I对VanX的抑制作用呈现时间依赖性,并且在稀释酶/抑制剂混合物后,酶活性会随时间依赖性地恢复到未受抑制的稳态速率。将VanX立即加入次膦酸酯I形成E-I复合物后的初始抑制常数Ki为1.5 microM,但随后通过相对缓慢的异构化步骤降低至第二种复合物E-I*,其最终Ki为0.47 microM。这种慢结合抑制反映出Km/Ki比值为2900:1。复合物E-I的缓慢解离速率常数为0.24 min-1。一种用乙基取代正常四面体加合物中第二个D-丙氨酰残基侧链的次膦酸酯类似物,其Ki值为90 nM。对VanX进行部分蛋白酶解显示出两个对蛋白酶敏感的环区域,它们受到中间体类似物次膦酸酯的保护,表明它们可能是VanX活性位点的一部分。

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