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首页> 外文期刊>Journal of bacteriology >Rubrerythrin and Rubredoxin Oxidoreductase inDesulfovibrio vulgaris: a Novel Oxidative Stress Protection System
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Rubrerythrin and Rubredoxin Oxidoreductase inDesulfovibrio vulgaris: a Novel Oxidative Stress Protection System

机译:寻常脱硫弧菌中的赤藻红素和氧化还原酶氧化还原酶:一种新型的氧化应激保护系统。

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Evidence is presented for an alternative to the superoxide dismutase (SOD)-catalase oxidative stress defense system inDesulfovibrio vulgaris (strain Hildenborough). This alternative system consists of the nonheme iron proteins, rubrerythrin (Rbr) and rubredoxin oxidoreductase (Rbo), the product of therbo gene (also called desulfoferrodoxin). A Δrbo strain of D. vulgaris was found to be more sensitive to internal superoxide exposure than was the wild type. Unlike Rbo, expression of plasmid-borne Rbr failed to restore the aerobic growth of a SOD-deficient strain of Escherichia coli. Conversely, plasmid-borne expression of two different Rbrs from D. vulgaris increased the viability of a catalase-deficient strain of E. coli that had been exposed to hydrogen peroxide whereas Rbo actually decreased the viability. A previously undescribed D. vulgaris gene was found to encode a protein having 50% sequence identity to that of E. coliFe-SOD. This gene also encoded an extended N-terminal sequence with high homologies to export signal peptides of periplasmic redox proteins. The SOD activity of D. vulgaris is not affected by the absence of Rbo and is concentrated in the periplasmic fraction of cell extracts. These results are consistent with a superoxide reductase rather than SOD activity of Rbo and with a peroxidase activity of Rbr. A joint role for Rbo and Rbr as a novel cytoplasmic oxidative stress protection system in D. vulgaris and other anaerobic microorganisms is proposed.
机译:提出了一种替代方法,可以替代寻常脱硫弧菌(希尔德伯勒菌株)中的超氧化物歧化酶(SOD)-过氧化氢酶氧化应激防御系统。该替代系统由非血红素铁蛋白,红血球蛋白(Rbr)和红氧还蛋白氧化还原酶(Rbo)组成,这是 rbo 基因的产物(也称为脱硫铁氧还蛋白)。 D的Δ rbo 菌株。寻常型被发现比野生型对内部超氧化物的暴露更敏感。与Rbo不同,质粒携带的Rbr的表达无法恢复SOD缺陷型大肠杆菌的有氧生长。相反,来自 D的两个不同Rbr的质粒载体表达。寻常型提高了过氧化氢酶缺陷型 E的活力。暴露于过氧化氢的大肠埃希菌,而Rbo实际上降低了其生存能力。先前未描述的 D。发现寻常的基因编码一种与 E具有50%序列同一性的蛋白质。大肠杆菌 Fe-SOD。该基因还编码具有高度同源性的延伸的N末端序列,以输出周质氧化还原蛋白的信号肽。 D的SOD活性。寻常型不受Rbo的影响,并且集中在细胞提取物的周质中。这些结果与Rbo的超氧化物还原酶而不是SOD活性和Rbr的过氧化物酶活性一致。 Rbo和Rbr在 D中作为新型胞质氧化应激保护系统的共同作用。提出了寻常型和其他厌氧性微生物。

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