首页> 美国卫生研究院文献>Journal of Bacteriology >Nucleotide sequence of Escherichia coli isochorismate synthetase gene entC and evolutionary relationship of isochorismate synthetase and other chorismate-utilizing enzymes.
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Nucleotide sequence of Escherichia coli isochorismate synthetase gene entC and evolutionary relationship of isochorismate synthetase and other chorismate-utilizing enzymes.

机译:大肠埃希氏异氰酸酯合成酶基因entC的核苷酸序列与异丁烯酸合成酶和其他利用分支酸盐的酶的进化关系。

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摘要

Biochemical analysis of the enzymatic activity catalyzing the conversion of chorismate to isochorismate in the enterobactin biosynthetic pathway attributed the reaction to the isochorismate synthetase enzyme, designated EntC. However, the lack of mutations defining this activity has hampered the precise identification of the entC structural gene. In this study, we engineered a stable insertion mutation into the chromosomal region between the enterobactin genes fepB and entE. This mutation disrupted the structural gene for a previously identified 44-kilodalton protein and eliminated production of 2,3-dihydroxybenzoic acid, the catechol precursor of enterobactin. The complete nucleotide sequence of this gene was determined and compared with the sequences of other genes encoding chorismate-utilizing proteins. The similarities observed in these comparisons not only indicated that the locus is entC but also supported the premise that these enzymes constitute a family of related proteins sharing a common evolutionary origin. In addition, in this and the accompanying paper (M. S. Nahlik, T. J. Brickman, B. A. Ozenberger, and M. A. McIntosh, J. Bacteriol. 171:784-790, 1989), evidence is presented indicating that the entA product is potentially a secondary factor in the chorismate-to-isochorismate conversion and that the prototypic entC lesion (entC401) resides in the structural gene for the EntA protein. Finally, polarity effects from the insertion mutation in entC on downstream biosynthetic genes indicated that this locus is the promoter-proximal cistron in an ent operon comprising at least five genes. Appropriate regulatory signals upstream of entC suggest that this operon is regulated by iron through interaction with the Fur repressor protein.
机译:在肠杆菌素生物合成途径中催化分支酸转化为异丁烯酸的酶活性的生化分析将反应归因于异丁烯酸合成酶,称为EntC。但是,缺乏定义该活性的突变妨碍了entC结构基因的精确鉴定。在这项研究中,我们设计了一个稳定的插入突变,进入肠杆菌素基因fepB和entE之间的染色体区域。这种突变破坏了先前确定的44-千达尔顿蛋白的结构基因,并消除了2,3-二羟基苯甲酸(肠杆菌素的邻苯二酚前体)的产生。确定了该基因的完整核苷酸序列,并将其与编码使用分支酸的蛋白质的其他基因的序列进行比较。在这些比较中观察到的相似性不仅表明基因座是entC,而且还支持了这些酶构成共享共同进化起源的相关蛋白家族的前提。此外,在本文件及其随附的论文中(MS Nahlik,TJ Brickman,BA Ozenberger和MA McIntosh,J。Bacteriol。171:784-790,1989),提供了证据表明entA产物可能是ENTA产物中的次要因素。肠酸盐到异丁酸盐的转化,原型entC病变(entC401)位于EntA蛋白的结构基因中。最后,来自entC插入突变对下游生物合成基因的极性影响表明,该基因座是包含至少五个基因的ENT操纵子中的启动子近侧顺反子。 entC上游的适当调控信号表明,该操纵子通过铁与Fur阻遏蛋白的相互作用而受到铁的调控。

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