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来自磷酸三酯酶基因家族的大肠杆菌蛋白的生化特性及晶体结构

Biochemical characterization and crystallographic structure of an Escherichia coli protein from the phosphotriesterase gene family.

作者信息

Buchbinder J L, Stephenson R C, Dresser M J, Pitera J W, Scanlan T S, Fletterick R J

机构信息

Department of Biochemistry and Biophysics, University of California, San Francisco, California 94143-0448, USA.

出版信息

Biochemistry. 1998 Apr 14;37(15):5096-106. doi: 10.1021/bi971707+.

Abstract

Phosphotriesterase homology protein (PHP) is a member of a recently discovered family of proteins related to phosphotriesterase, a hydrolytic, bacterial enzyme with an unusual substrate specificity for synthetic organophosphate triesters and phosphorofluoridates, which are common constituents of chemical warfare agents and agricultural pesticides. No natural substrate has been identified for phosphotriesterase, and it has been suggested that the enzyme may have evolved the ability to hydrolyze synthetic compounds in bacteria under selective pressure to meet nutritional needs. PHP, which has 28% sequence identity with phosphotriesterase, may belong to the family of proteins from which phosphotriesterase evolved. Here we report the cloning, expression, initial characterization, and high-resolution X-ray crystallographic structure of PHP. Biochemical analysis shows that PHP is monomeric and binds two zinc ions per monomer. Unlike phosphotriesterase, PHP does not catalyze the hydrolysis of nonspecific phosphotriesters. The structure, similar to that of phosphotriesterase, consists of a long, elliptical alpha/beta barrel and has a binuclear zinc center in a cleft at the carboxy end of the barrel at the location of the presumptive active site.

摘要

磷酸三酯酶同源蛋白(PHP)是最近发现的与磷酸三酯酶相关的蛋白质家族的成员。磷酸三酯酶是一种水解性细菌酶,对合成有机磷酸三酯和磷氟化物具有不寻常的底物特异性,而这些物质是化学战剂和农用杀虫剂的常见成分。尚未确定磷酸三酯酶的天然底物,有人提出该酶可能是在选择性压力下,为满足营养需求而在细菌中进化出了水解合成化合物的能力。PHP与磷酸三酯酶有28%的序列同一性,可能属于磷酸三酯酶进化而来的蛋白质家族。在此,我们报告了PHP的克隆、表达、初步表征以及高分辨率X射线晶体结构。生化分析表明,PHP是单体,每个单体结合两个锌离子。与磷酸三酯酶不同,PHP不催化非特异性磷酸三酯的水解。其结构与磷酸三酯酶相似,由一个长的椭圆形α/β桶组成,在桶状结构羧基末端的裂隙处有一个双核锌中心,位于假定的活性位点位置。

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