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来自大肠杆菌的氨肽酶N(变形菌丙氨酰氨肽酶)的晶体结构以及参与底物识别的甲硫氨酸260的构象变化。

Crystal structure of aminopeptidase N (proteobacteria alanyl aminopeptidase) from Escherichia coli and conformational change of methionine 260 involved in substrate recognition.

作者信息

Ito Kiyoshi, Nakajima Yoshitaka, Onohara Yuko, Takeo Masahide, Nakashima Kanako, Matsubara Futoshi, Ito Takashi, Yoshimoto Tadashi

机构信息

Graduate School of Biomedical Sciences, Nagasaki University, 1-14 Bunkyo-machi, Nagasaki 852-8521, Japan.

出版信息

J Biol Chem. 2006 Nov 3;281(44):33664-76. doi: 10.1074/jbc.M605203200. Epub 2006 Aug 2.

DOI:10.1074/jbc.M605203200
PMID:16885166
Abstract

Aminopeptidase N from Escherichia coli is a broad specificity zinc exopeptidase belonging to aminopeptidase clan MA, family M1. The structures of the ligand-free form and the enzyme-bestatin complex were determined at 1.5- and 1.6-A resolution, respectively. The enzyme is composed of four domains: an N-terminal beta-domain (Met(1)-Asp(193)), a catalytic domain (Phe(194)-Gly(444)), a middle beta-domain (Thr(445)-Trp(546)), and a C-terminal alpha-domain (Ser(547)-Ala(870)). The structure of the catalytic domain exhibits similarity to thermolysin, and a metal-binding motif (HEXXHX(18)E) is found in the domain. The zinc ion is coordinated by His(297), His(301), Glu(320), and a water molecule. The groove on the catalytic domain that contains the active site is covered by the C-terminal alpha-domain, and a large cavity is formed inside the protein. However, there exists a small hole at the center of the C-terminal alpha-domain. The N terminus of bestatin is recognized by Glu(121) and Glu(264), which are located in the N-terminal and catalytic domains, respectively. Glu(298) and Tyr(381), located near the zinc ion, are considered to be involved in peptide cleavage. A difference revealed between the ligand-free form and the enzyme-bestatin complex indicated that Met(260) functions as a cushion to accept substrates with different N-terminal residue sizes, resulting in the broad substrate specificity of this enzyme.

摘要

来自大肠杆菌的氨肽酶N是一种具有广泛特异性的锌外肽酶,属于氨肽酶家族MA、M1族。分别以1.5埃和1.6埃的分辨率测定了无配体形式和酶-贝司他汀复合物的结构。该酶由四个结构域组成:N端β结构域(Met(1)-Asp(193))、催化结构域(Phe(194)-Gly(444))、中间β结构域(Thr(445)-Trp(546))和C端α结构域(Ser(547)-Ala(870))。催化结构域的结构与嗜热菌蛋白酶相似,且在该结构域中发现了一个金属结合基序(HEXXHX(18)E)。锌离子由His(297)、His(301)、Glu(320)和一个水分子配位。包含活性位点的催化结构域上的凹槽被C端α结构域覆盖,在蛋白质内部形成一个大腔。然而,在C端α结构域的中心存在一个小孔。贝司他汀的N端分别被位于N端结构域和催化结构域的Glu(121)和Glu(264)识别。位于锌离子附近的Glu(298)和Tyr(381)被认为参与了肽的切割。无配体形式和酶-贝司他汀复合物之间的差异表明,Met(260)起到缓冲作用,以接受具有不同N端残基大小的底物,从而导致该酶具有广泛的底物特异性。

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