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Sulfur oxidation in mutants of the photosynthetic green sulfur bacterium Chlorobium tepidum devoid of cytochrome c-554 and SoxB

机译:缺乏细胞色素c-554和SoxB的光合作用绿色硫细菌淡绿梭菌突变体中的硫氧化

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A mutant devoid of cytochrome c-554 (CT0075) in Chlorobium tepidum (syn. Chlorobaculum tepidum) exhibited a decreased growth rate but normal growth yield when compared to the wild type. From quantitative determinations of sulfur compounds in media, the mutant was found to oxidize thiosulfate more slowly than the wild type but completely to sulfate as the wild type. This indicates that cytochrome c-554 would increase the rate of thiosulfate oxidation by serving as an efficient electron carrier but is not indispensable for thiosulfate oxidation itself. On the other hand, mutants in which a portion of the soxB gene (CT1021) was replaced with the aacC1 cassette did not grow at all in a medium containing only thiosulfate as an electron source. They exhibited partial growth yields in media containing only sulfide when compared to the wild type. This indicates that SoxB is not only essential for thiosulfate oxidation but also responsible for sulfide oxidation. An alternative electron carrier or electron transfer path would thus be operating between the Sox system and the reaction center in the mutant devoid of cytochrome c-554. Cytochrome c-554 might function in any other pathway(s) as well as the thiosulfate oxidation one, since even green sulfur bacteria that cannot oxidize thiosulfate contain a cycA gene encoding this electron carrier.
机译:与野生型相比,在绿皮鳞茎中的无细胞色素c-554(CT0075)突变体表现出降低的生长速率,但生长正常。通过定量测定培养基中的硫化合物,发现突变体氧化硫代硫酸盐的速度比野生型慢,但完全氧化为野生型。这表明细胞色素c-554通过充当有效的电子载体将增加硫代硫酸盐的氧化速率,但对于硫代硫酸盐氧化本身并不是必不可少的。另一方面,用aacC1盒代替了soxB基因(CT1021)的一部分的突变体在仅以硫代硫酸盐为电子源的培养基中根本不生长。与野生型相比,它们在仅含硫化物的培养基中显示出部分生长量。这表明SoxB不仅对硫代硫酸盐氧化至关重要,而且对硫化物氧化负责。因此,在没有细胞色素c-554的突变体中,Sox系统与反应中心之间将存在另一种电子载体或电子转移路径。细胞色素c-554可能会在其他任何途径以及硫代硫酸盐的氧化途径中起作用,因为即使不能氧化硫代硫酸盐的绿色硫细菌也含有编码该电子载体的cycA基因。

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