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U(VI) Reduction by Diverse Outer Surface c-Type Cytochromes of Geobacter sulfurreducens

机译:降低土壤细菌硫还原菌的外表面c型细胞色素引起的U(VI)还原

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Early studies with Geobacter sulfurreducens suggested that outer-surface c -type cytochromes might play a role in U(VI) reduction, but it has recently been suggested that there is substantial U(VI) reduction at the surface of the electrically conductive pili known as microbial nanowires. This phenomenon was further investigated. A strain of G. sulfurreducens , known as Aro-5, which produces pili with substantially reduced conductivity reduced U(VI) nearly as well as the wild type, as did a strain in which the gene for PilA, the structural pilin protein, was deleted. In order to reduce rates of U(VI) reduction to levels less than 20% of the wild-type rates, it was necessary to delete the genes for the five most abundant outer surface c -type cytochromes of G. sulfurreducens . X-ray absorption near-edge structure spectroscopy demonstrated that whereas 83% ± 10% of the uranium associated with wild-type cells correspond to U(IV) after 4 h of incubation, with the quintuple mutant, 89% ± 10% of uranium was U(VI). Transmission electron microscopy and X-ray energy dispersion spectroscopy revealed that wild-type cells did not precipitate uranium along pili as previously reported, but U(IV) was precipitated at the outer cell surface. These findings are consistent with those of previous studies, which have suggested that G. sulfurreducens requires outer-surface c -type cytochromes but not pili for the reduction of soluble extracellular electron acceptors.
机译:早期对Geobacter sulphreducens的研究表明,外表面c型细胞色素可能在U(VI)还原中起作用,但最近有研究表明,导电菌毛表面的U(VI)大量还原。微生物纳米线。对此现象进行了进一步调查。一株被称为Aro-5的G.thioreducens菌株,其菌毛的电导率大大降低,其U(VI)几乎与野生型一样,其菌株PilA的基因是菌毛蛋白,已删除。为了将U(VI)还原率降低至低于野生型率的20%,有必要删除硫还原菌的五个最丰富的外表面c型细胞色素的基因。 X射线吸收近缘结构光谱显示,与野生型细胞相关的铀的83%±10%孵育4小时后对应于U(IV),五重突变体为89%±10%铀是U(VI)。透射电子显微镜和X射线能谱分析表明,野生型细胞没有像先前报道的那样沿菌毛沉淀铀,但是U(IV)沉淀在细胞外表面。这些发现与先前的研究一致,这些研究表明,还原硫的G.sulfens需要外表面的c型细胞色素,但不需要菌毛来减少可溶性细胞外电子受体。

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