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Physiological function and regulation of flavocytochrome c3, the soluble fumarate reductase from Shewanella putrefaciens NCIMB 400

机译:生理功能和黄酮纤维C3,来自芍药菌的可溶性富马酸还原酶NCIMB 400

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Shewanella putrefaciens produces a soluble flavocytochrome c under anaerobic growth conditions. This protein shares sequence similarity with the catalytic subunits of membrane-bound fumarate reductases from Escherichia coli and other bacteria and the purified protein has fumarate reductase activity. It is shown here that this enzyme, flavocytochrome c3, is essential for fumarate respiration in vivo since disruption of the chromosomal fccA gene, which encodes flavocytochrome c3, leads to a specific loss of the ability to grow with fumarate as terminal electron acceptor. Growth with nitrate, trimethylamine N-oxide (TMAO) and other acceptors was unaffected. The fccA gene is transcribed as a 2 kb monocistronic mRNA. An adjacent reading frame that bears limited sequence similarity to one of the membrane anchor subunits of E. coli fumarate reductase is not co-transcribed with fccA. Expression of the fccA gene is regulated by anaerobiosis and by the availability of alternative electron acceptors, particularly nitrate and TMAO. DNA sequences have been identified that are required for this regulation.
机译:Shechanella Putrefaciens在厌氧生长条件下产生一种可溶性黄芩。该蛋白质与来自大肠杆菌和其他细菌的膜结合的富马酸盐还原酶的催化亚蛋白质分享序列相似性,并且纯化的蛋白质具有富马酸还原酶活性。这里示出了这种酶黄酮酵母C3,这对于体内富马酸盐呼吸是必不可少的,因为编码黄鳞菌C3的染色体FCCA基因的破坏导致具有富马酸莫酸盐作为终端电子受体的能力的特异性丧失。用硝酸盐生长,三甲胺N-氧化物(TMAO)和其他受影响不受影响。 FCCA基因被转录为2kb单闭的mRNA。与大肠杆菌富马酸酯还原酶的其中一个膜锚亚基相邻序列相似性的相邻阅读框架不与FCCA共转录。 FCCA基因的表达由厌氧病调节,并通过替代电子受体,特别是硝酸盐和TMAO的可用性。已经确定了该调节所需的DNA序列。

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