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CDP - 二甘油酯水解酶缺陷型大肠杆菌菌株的分离与鉴定

Isolation and characterization of Escherichia coli strains defective in CDP-diglyceride hydrolase.

作者信息

Bulawa C E, Raetz C R

出版信息

J Biol Chem. 1984 Sep 25;259(18):11257-64.

PMID:6147353
Abstract

CDP-diglyceride, an obligatory intermediate in the biosynthesis of the glycerophospholipids in Escherichia coli, is cleaved in vitro to phosphatidic acid and CMP by a membrane-bound hydrolase. Previous work from our laboratory (Bulawa, C.E., Hermes, J.D., and Raetz, C. R. H. (1983) J. Biol. Chem. 258, 14974-14980) has demonstrated that this enzyme also catalyzes the transfer of CMP from CDP-diglyceride to phosphate and numerous phosphomonoesters. We now report the isolation of E. coli mutants which are defective in CDP-diglyceride hydrolase. These mutations, designated cdh, map at minute 88 between pfkA and tpi. This information permitted the identification of a ColE1 hybrid plasmid, pLC16-4, which causes the overproduction of hydrolase activity. The isolation of deletion and Tn10 insertion mutants at cdh suggests that the hydrolase is nonessential for cell growth. Hydrolase mutants are defective in both CDP-diglyceride hydrolysis and CDP-diglyceride-dependent cytidylylation, indicating that both activities are encoded by the cdh gene. Although previously described as a ribospecific enzyme, we have found that incubation of the partially purified hydrolase with [alpha-32P]dCDP-diglyceride and phosphate yields two products, [32P]dCMP and [alpha-32P]dCDP. That a single enzyme utilizes both CDP- and dCDP-diglyceride is demonstrated by the following. (i) The hydrolysis of [alpha-32P]CDP-diglyceride is inhibited by nonradioactive dCDP-diglyceride and vice versa. (ii) Utilization of both liponucleotides is inhibited by AMP. (iii) Mutants in the cdh gene are defective in both CDP- and dCDP-diglyceride hydrolysis, while cdh clones overproduce both activities. (iv) Hydrolase mutants accumulate both CDP- and dCDP-diglyceride.

摘要

CDP - 二甘油酯是大肠杆菌甘油磷脂生物合成过程中的一种必需中间体,它在体外被一种膜结合水解酶裂解为磷脂酸和CMP。我们实验室之前的工作(Bulawa, C.E., Hermes, J.D., and Raetz, C. R. H. (1983) J. Biol. Chem. 258, 14974 - 14980)表明,这种酶还催化CMP从CDP - 二甘油酯转移到磷酸和许多磷酸单酯上。我们现在报告了在CDP - 二甘油酯水解酶方面存在缺陷的大肠杆菌突变体的分离情况。这些突变被命名为cdh,位于88分钟处,在pfkA和tpi之间。这一信息使得能够鉴定出一种ColE1杂交质粒pLC16 - 4,它会导致水解酶活性的过量产生。在cdh处缺失和Tn10插入突变体的分离表明,水解酶对于细胞生长并非必需。水解酶突变体在CDP - 二甘油酯水解和CDP - 二甘油酯依赖性胞苷酰化方面均存在缺陷,这表明这两种活性均由cdh基因编码。尽管之前被描述为一种核糖特异性酶,但我们发现,将部分纯化的水解酶与[α - 32P]dCDP - 二甘油酯和磷酸一起温育会产生两种产物,即[32P]dCMP和[α - 32P]dCDP。以下内容证明了单一酶同时利用CDP - 和dCDP - 二甘油酯。(i)[α - 32P]CDP - 二甘油酯的水解受到非放射性dCDP - 二甘油酯的抑制,反之亦然。(ii)两种脂核苷酸的利用均受到AMP的抑制。(iii)cdh基因中的突变体在CDP - 和dCDP - 二甘油酯水解方面均存在缺陷,而cdh克隆则使两种活性均过量产生。(iv)水解酶突变体积累CDP - 和dCDP - 二甘油酯。

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