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大肠杆菌entC基因产物催化分支酸体外转化为异分支酸。EntA对异分支酸合酶活性无贡献的证据。

The in vitro conversion of chorismate to isochorismate catalyzed by the Escherichia coli entC gene product. Evidence that EntA does not contribute to isochorismate synthase activity.

作者信息

Tummuru M K, Brickman T J, McIntosh M A

机构信息

Department of Microbiology, School of Medicine, University of Missouri, Columbia 65212.

出版信息

J Biol Chem. 1989 Dec 5;264(34):20547-51.

PMID:2684979
Abstract

The entC and entA genes, coding for the enzymes isochorismate synthase and 2,3-dihydro-2,3-dihydroxybenzoate dehydrogenase, respectively, were subcloned behind the T7 promoter in the expression plasmid pGEM3Z. Their protein products were overproduced and partially purified for in vitro analysis of the conversion of chorismate to isochorismate. Whereas previous genetic experiments suggested that the EntA enzyme has a role in this conversion, this study clearly indicates that EntC alone catalyzes the reaction. Addition of EntA had no effect on isochorismate synthase activity. As a result, the mutation (previously designated entC401) in strain AN191 was characterized by nucleotide sequence analysis. The lesion is a single base substitution in the entA gene, resulting in a glutamic acid-for-glycine substitution at the penultimate amino acid (residue 247) of the EntA enzyme. The mutant protein was partially purified and shown to be devoid of 2,3-dihydro-2,3-dihydroxybenzoate dehydrogenase activity, whereas the entC gene product from strain AN191 exhibited normal isochorismate synthase function. These results conflict with the earlier characterization of the entC401 mutation in a different genetic background. The data presented herein establish that the EntA protein does not contribute to isochorismate synthase activity and that the mutant strain that led to this suggestion harbors a defective allele of entA rather than entC.

摘要

分别编码异分支酸合酶和2,3-二氢-2,3-二羟基苯甲酸脱氢酶的entC和entA基因,被亚克隆到表达质粒pGEM3Z中T7启动子的下游。它们的蛋白质产物被过量表达并部分纯化,用于体外分析分支酸向异分支酸的转化。尽管先前的遗传学实验表明EntA酶在这种转化中起作用,但本研究清楚地表明,单独的EntC催化该反应。添加EntA对异分支酸合酶活性没有影响。因此,通过核苷酸序列分析对菌株AN191中的突变(先前称为entC401)进行了表征。该损伤是entA基因中的单个碱基取代,导致EntA酶的倒数第二个氨基酸(第247位残基)处的甘氨酸被谷氨酸取代。突变蛋白被部分纯化,结果显示其缺乏2,3-二氢-2,3-二羟基苯甲酸脱氢酶活性,而来自菌株AN191的entC基因产物表现出正常的异分支酸合酶功能。这些结果与在不同遗传背景下对entC401突变的早期表征相矛盾。本文提供的数据表明,EntA蛋白对异分支酸合酶活性没有贡献,导致这一推测的突变菌株携带的是entA而非entC的缺陷等位基因。

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