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L-亮氨酸膦酸对解蛋白气单胞菌氨肽酶的抑制作用。肽水解过渡态的光谱和晶体学表征。

Inhibition of the aminopeptidase from Aeromonas proteolytica by L-leucinephosphonic acid. Spectroscopic and crystallographic characterization of the transition state of peptide hydrolysis.

作者信息

Stamper C, Bennett B, Edwards T, Holz R C, Ringe D, Petsko G

机构信息

Program in Biophysics and Structural Biology, Department of Biochemistry and Rosenstiel Basic Medical Research Center, Brandeis University, 415 South Street, Waltham, Massachusetts 02254, USA.

出版信息

Biochemistry. 2001 Jun 19;40(24):7035-46. doi: 10.1021/bi0100891.

Abstract

The nature of the interaction of the transition-state analogue inhibitor L-leucinephosphonic acid (LPA) with the leucine aminopeptidase from Aeromonas proteolytica (AAP) was investigated. LPA was shown to be a competitive inhibitor at pH 8.0 with a K(i) of 6.6 microM. Electronic absorption spectra, recorded at pH 7.5 of [CoCo(AAP)], [CoZn(AAP)], and [ZnCo(AAP)] upon addition of LPA suggest that LPA interacts with both metal ions in the dinuclear active site. EPR studies on the Co(II)-substituted forms of AAP revealed that the environments of the Co(II) ions in both [CoZn(AAP)] and [ZnCo(AAP)] become highly asymmetric and constrained upon the addition of LPA and clearly indicate that LPA interacts with both metal ions. The X-ray crystal structure of AAP complexed with LPA was determined at 2.1 A resolution. The X-ray crystallographic data indicate that LPA interacts with both metal centers in the dinuclear active site of AAP and a single oxygen atom bridge is absent. Thus, LPA binds to the dinuclear active site of AAP as an eta-1,2-mu-phosphonate with one ligand to the second metal ion provided by the N-terminal amine. A structural comparison of the binding of phosphonate-containing transition-state analogues to the mono- and bimetallic peptidases provides insight into the requirement for the second metal ion in bridged bimetallic peptidases. On the basis of the results obtained from the spectroscopic and X-ray crystallographic data presented herein along with previously reported mechanistic data for AAP, a new catalytic mechanism for the hydrolysis reaction catalyzed by AAP is proposed.

摘要

研究了过渡态类似物抑制剂L-亮氨酸膦酸(LPA)与解蛋白气单胞菌(AAP)的亮氨酸氨肽酶之间相互作用的性质。结果表明,LPA在pH 8.0时为竞争性抑制剂,其抑制常数(K(i))为6.6微摩尔。在添加LPA后,于pH 7.5记录的[CoCo(AAP)]、[CoZn(AAP)]和[ZnCo(AAP)]的电子吸收光谱表明,LPA与双核活性位点中的两种金属离子均发生相互作用。对AAP的钴(II)取代形式进行的电子顺磁共振(EPR)研究表明,在添加LPA后,[CoZn(AAP)]和[ZnCo(AAP)]中钴(II)离子的环境变得高度不对称且受到限制,这清楚地表明LPA与两种金属离子均发生相互作用。以2.1埃的分辨率测定了与LPA复合的AAP的X射线晶体结构。X射线晶体学数据表明,LPA与AAP双核活性位点中的两个金属中心均发生相互作用,且不存在单个氧原子桥。因此,LPA以η-1,2-μ-膦酸酯的形式结合到AAP的双核活性位点,其中一个配体与由N端胺提供的第二个金属离子结合。含膦酸酯的过渡态类似物与单金属和双金属肽酶结合的结构比较,为桥连双金属肽酶中第二个金属离子的需求提供了见解。基于本文给出的光谱和X射线晶体学数据以及先前报道的AAP的机理数据,提出了一种由AAP催化水解反应的新催化机制。

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