首页> 外文期刊>Journal of bacteriology >Cytochrome o (cyoABCDE) and d (cydAB) oxidase gene expression in Escherichia coli is regulated by oxygen, pH, and the fnr gene product.
【24h】

Cytochrome o (cyoABCDE) and d (cydAB) oxidase gene expression in Escherichia coli is regulated by oxygen, pH, and the fnr gene product.

机译:大肠杆菌中的细胞色素o(cyoABCDE)和d(cydAB)氧化酶基因表达受氧气,pH和fnr基因产物的调节。

获取原文
           

摘要

The aerobic respiratory chain of Escherichia coli contains two terminal oxidases that catalyze the oxidation of ubiquinol-8 and the reduction of oxygen to water. They are the cytochrome o oxidase complex encoded by cyoABCDE and the cytochrome d oxidase complex encoded by cydAB. To determine how these genes are regulated in response to a variety of environmental stimuli, including oxygen, we examined their expression by using lacZ protein fusions in wild-type and fnr mutant strains of E. coli. Anaerobic growth resulted in a 140-fold repression of cyoA'-'lacZ expression relative to aerobic growth and a 3-fold increase in cydA'-'lacZ expression. Anaerobic repression of both fusions was mediated in part by the fnr gene product, as evidenced by a 30-fold derepression of cyoA'-'lacZ expression and a 4-fold derepression of cydA'-'lacZ expression in an fnr deletion strain. Supplying wild-type fnr in trans restored wild-type repression for both fusions. Fnr thus functions as an anaerobic repressor of both cyoABCDE and cydAB expression. Reduced-minus-oxidized difference spectrum analyses of cell membranes confirmed the effect of the fnr gene product on the production of cytochrome d oxidase in the cell. Based on the pattern of anaerobic cydAB expression observed, we propose the existence of a second, as yet unidentified, regulatory element that must function either to activate cydAB expression as oxygen becomes limiting or to repress cydAB expression aerobically. Whereas cytochrome o oxidase encoded by cyoABCDE appears to be produced only under oxygen-rich growth conditions, in keeping with its biochemical properties, cytochrome d oxidase is expressed moderately aerobically and is elevated yet further when oxygen becomes limiting so that the organism can cope better under oxygen starvation conditions. We also examined cyoABCDE and cydAB expression in response to growth on alternative carbon compounds and to changes in the culture medium pH and osmolarity.
机译:大肠杆菌的好氧呼吸链包含两个末端氧化酶,可催化泛醇8的氧化和将氧气还原为水。它们是cyoABCDE编码的细胞色素O氧化酶复合物和cydAB编码的细胞色素D氧化酶复合物。为了确定如何响应包括氧气在内的各种环境刺激来调节这些基因,我们通过在大肠杆菌的野生型和fnr突变菌株中使用lacZ蛋白融合蛋白检查了它们的表达。厌氧生长导致cyoA'-'lacZ表达相对于有氧生长抑制140倍,而cydA'-'lacZ表达则增加3倍。两种融合物的厌氧抑制部分地由fnr基因产物介导,这通过在fnr缺失菌株中对cyoA'-'lacZ表达的30倍抑制和对cydA'-'lacZ表达的4倍抑制来证明。反式提供野生型fnr可恢复两种融合的野生型抑制。因此,Fnr充当cyoABCDE和cydAB表达的厌氧抑制剂。细胞膜的减负氧化差异光谱分析证实了fnr基因产物对细胞中细胞色素d氧化酶产生的影响。基于观察到的厌氧cydAB表达模式,我们建议存在第二个尚未确定的调节元件,该调节元件必须随着氧气变得有限而激活cydAB表达或有氧抑制cydAB表达。尽管cyoABCDE编码的细胞色素o氧化酶似乎仅在富氧生长条件下产生,但与其生化特性保持一致,细胞色素d氧化酶可适度需氧表达,并在氧气变得有限时进一步升高,以使生物体可以更好地应对缺氧条件。我们还检查了cyoABCDE和cydAB的表达,以响应替代碳化合物的生长以及培养基pH和渗透压的变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号