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来自大肠杆菌的谷胱甘肽还原酶:基因的克隆与序列分析及其与其他黄素蛋白二硫化物氧化还原酶的关系

Glutathione reductase from Escherichia coli: cloning and sequence analysis of the gene and relationship to other flavoprotein disulfide oxidoreductases.

作者信息

Greer S, Perham R N

出版信息

Biochemistry. 1986 May 6;25(9):2736-42. doi: 10.1021/bi00357a069.

Abstract

A glutathione reductase negative strain of Escherichia coli K-12 was isolated as a thermoresistant survivor when a gor::MuctsAp lysogen was subjected to elevated temperature. It was found that in addition to being ampicillin sensitive this mutant was hypersensitive to arsenate, which may be connected with the fact that the gor gene maps between 77 and 78 min on the E. coli genome, close to the pit locus encoding the major arsenate transport system of E. coli. A derivative of this mutant was used as the recipient in a screen of the Clarke and Carbon hybrid plasmid bank of E. coli DNA. A plasmid, pGR, was isolated that encodes both an arsenate-resistance element and glutathione reductase. Restriction mapping of this plasmid showed that the insert DNA is approximately 10 kilobase pairs in length, and a fragment of the gor gene was identified that allowed the gor gene to be accurately mapped on pGR by a combination of restriction analysis and Southern blotting. The DNA sequence of the gor gene was determined and found to encode a protein of 450 amino acid residues. The glutathione reductase of E. coli is very homologous to the human enzyme and is also related (though less closely) to other flavoprotein disulfide oxidoreductases whose sequences are available. These enzymes have retained a common mechanism while evolving different specificities.

摘要

当携带gor::MuctsAp溶原的大肠杆菌K-12菌株经受高温时,分离出一株谷胱甘肽还原酶阴性的菌株作为耐热存活菌。发现该突变体除了对氨苄青霉素敏感外,对砷酸盐也高度敏感,这可能与gor基因位于大肠杆菌基因组77至78分钟之间有关,该位置靠近编码大肠杆菌主要砷酸盐转运系统的pit基因座。该突变体的一个衍生物被用作受体,用于筛选大肠杆菌DNA的克拉克和卡本杂交质粒文库。分离出一个质粒pGR,它编码一个抗砷酸盐元件和谷胱甘肽还原酶。该质粒的限制性图谱显示插入DNA长度约为10千碱基对,鉴定出一段gor基因片段,通过限制性分析和Southern印迹相结合的方法,可将gor基因准确地定位在pGR上。测定了gor基因的DNA序列,发现它编码一个由450个氨基酸残基组成的蛋白质。大肠杆菌的谷胱甘肽还原酶与人类的酶高度同源,并且(尽管关系不那么密切)也与其他已知序列的黄素蛋白二硫化物氧化还原酶有关。这些酶在进化出不同特异性的同时保留了共同的机制。

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