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Fate of arsenate following arsenite oxidation in Agrobacterium tumefaciensGW4

机译:根癌农杆菌GW4中亚砷酸盐氧化后的砷酸盐命运

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The fate of arsenate (As-V) generated by microbial arsenite (As-III) oxidation is poorly understood. Agrobacterium tumefaciens wild-type strain (GW4) was studied to determine how the cell copes with As-V generated in batch culture. GW4 grown heterotrophically with mannitol used As-III as a supplemental energy supply as reflected by enhanced growth and increased cellular levels of NADH and ATP. Under low phosphate (Pi) conditions and presence of As-III oxidation, up to approximate to 50% of the resulting As-V was taken up and found associated with the periplasm, membrane or cytoplasm fractions of the cells. Arsenic was found associated with proteins and polar lipids, but not in nucleic acids or sugars. Thin-layer chromatography and gas chromatography-mass spectrometry analysis suggested the presence of arsenolipids in membranes, presumably as part of the bilayer structure of the cell membrane and replacing Pi under Pi-limiting conditions. The potential role of a Pi-binding protein (PstS) for As-V uptake was assessed with the His-tag purified protein. Intrinsic tryptophan fluorescence spectra analysis suggests that PstS can bind As-V, but with lower affinity as compared with Pi. In early stationary phase cells, the As-V:Pi ratio was approximately 4.3 and accompanied by an altered cell ultrastructure.
机译:人们对微生物亚砷酸盐(As-III)氧化生成的砷酸盐(As-V)的命运了解甚少。研究了根癌农杆菌野生型菌株(GW4),以确定细胞如何应对分批培养中产生的As-V。 GW4与甘露醇异养生长,将As-III用作补充能量供应,这通过增加生长以及增加NADH和ATP的细胞水平来体现。在低磷酸盐(Pi)条件下和As-III氧化存在下,吸收了大约50%的所得As-V,并发现与细胞的周质,膜或细胞质组分有关。发现砷与蛋白质和极性脂质有关,但与核酸或糖无关。薄层色谱和气相色谱-质谱分析表明,膜中存在砷脂,大概是细胞膜双层结构的一部分,并在Pi限制条件下取代了Pi。用His标签纯化的蛋白评估了Pi结合蛋白(PstS)对As-V摄取的潜在作用。固有色氨酸荧光光谱分析表明,PstS可以结合As-V,但与Pi相比具有较低的亲和力。在早期静止期细胞中,As-V:Pi比约为4.3,并伴随着细胞超微结构的改变。

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