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大肠杆菌C原儿茶酸降解操纵子:hpc基因顺序、转录方向及表达调控

The Escherichia coli C homoprotocatechuate degradative operon: hpc gene order, direction of transcription and control of expression.

作者信息

Roper D I, Fawcett T, Cooper R A

机构信息

Department of Biochemistry, University of Leicester, UK.

出版信息

Mol Gen Genet. 1993 Feb;237(1-2):241-50. doi: 10.1007/BF00282806.

Abstract

Homoprotocatechuate (HPC; 3,4-dihydroxyphenylacetate) is catabolized to Krebs cycle intermediates via extradiol (meta-) cleavage and the necessary enzymes are chromosomally encoded in a variety of bacteria. Based on an analysis of the cloned pathway genes, the Escherichia coli C hpc gene cluster was thought to be arranged in two gene blocks transcribed from a central, divergent, operator/promoter region, which was negatively regulated by the Hpc repressor. By a variety of techniques including expression of cloned hpc genes in pUC18/19 vectors, unidirectional deletion subcloning, hybridization studies and nucleotide sequencing it has now been shown that the hpc pathway structural genes are transcribed in one direction. These experiments have also indicated that a decarboxylase and an isomerase of the pathway are encoded by a single gene (hpcE) and have established the exact structural gene order as hpcRphpcECBDGH. The position of the putative regulatory gene, hpcR, is upstream of the first structural gene (hpcE) for the Hpc pathway enzymes. The deduced open reading frame for the Hpc repressor specifies a protein of 148 amino acids with a subunit molecular weight of 17 kDa. The region between hpcR and the first gene for the pathway enzymes has a sequence similar to that for catabolite activator protein (CAP) binding. This region is immediately upstream of a promoter for the pathway structural genes, which has been identified by transcript mapping.

摘要

高香草酸(HPC;3,4-二羟基苯乙酸)通过间位二醇(间位)裂解被分解代谢为三羧酸循环中间体,所需的酶在多种细菌中由染色体编码。基于对克隆的途径基因的分析,大肠杆菌C hpc基因簇被认为排列成两个基因块,从一个位于中央的、双向的、操纵子/启动子区域转录,该区域受Hpc阻遏物的负调控。通过多种技术,包括在pUC18/19载体中克隆hpc基因的表达、单向缺失亚克隆、杂交研究和核苷酸测序,现已表明hpc途径结构基因是单向转录的。这些实验还表明,该途径的一种脱羧酶和一种异构酶由单个基因(hpcE)编码,并确定了确切的结构基因顺序为hpcRphpcECBDGH。假定的调控基因hpcR位于Hpc途径酶的第一个结构基因(hpcE)的上游。推导的Hpc阻遏物开放阅读框指定了一个由148个氨基酸组成的蛋白质,亚基分子量为17 kDa。hpcR与途径酶的第一个基因之间的区域具有与分解代谢物激活蛋白(CAP)结合区域相似的序列。该区域紧邻途径结构基因启动子的上游,已通过转录图谱鉴定。

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