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Cytochrome c 3 Mutants ofDesulfovibrio desulfuricans

机译:Desulfovibrio desulfuricans的细胞色素c 3突变体

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To explore the physiological role of tetraheme cytochromec 3 in the sulfate-reducing bacteriumDesulfovibrio desulfuricans G20, the gene encoding the preapoprotein was cloned, sequenced, and mutated by plasmid insertion. The physical analysis of the DNA from the strain carrying the integrated plasmid showed that the insertion was successful. The growth rate of the mutant on lactate with sulfate was comparable to that of the wild type; however, mutant cultures did not achieve the same cell densities. Pyruvate, the oxidation product of lactate, served as a poor electron source for the mutant. Unexpectedly, the mutant was able to grow on hydrogen-sulfate medium. These data support a role for tetraheme cytochromec 3 in the electron transport pathway from pyruvate to sulfate or sulfite in D. desulfuricans G20.
机译:为了探索四血红素细胞色素 c 3 在硫酸盐还原菌 Desulfovibrio desulfuricans G20中的生理作用,克隆了编码前载脂蛋白的基因,并进行了测序。 ,并通过质粒插入进行突变。对携带整合质粒的菌株DNA的物理分析表明,插入成功。突变体在含硫酸盐的乳酸上的生长速率与野生型相当。然而,突变培养物没有达到相同的细胞密度。丙酮酸是乳酸的氧化产物,是突变体的不良电子源。出乎意料的是,该突变体能够在硫酸氢培养基上生长。这些数据支持四血红素细胞色素 c 3 D中从丙酮酸到硫酸盐或亚硫酸盐的电子传输路径中的作用。脱硫尿素G20。

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