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Tungsten and Molybdenum Regulation of Formate Dehydrogenase Expression in Desulfovibrio vulgaris Hildenborough ▿

机译:钨和钼对寻常脱硫弧菌希尔登伯勒甲中脱氢酶表达的调控

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摘要

Formate is an important energy substrate for sulfate-reducing bacteria in natural environments, and both molybdenum- and tungsten-containing formate dehydrogenases have been reported in these organisms. In this work, we studied the effect of both metals on the levels of the three formate dehydrogenases encoded in the genome of Desulfovibrio vulgaris Hildenborough, with lactate, formate, or hydrogen as electron donors. Using Western blot analysis, quantitative real-time PCR, activity-stained gels, and protein purification, we show that a metal-dependent regulatory mechanism is present, resulting in the dimeric FdhAB protein being the main enzyme present in cells grown in the presence of tungsten and the trimeric FdhABC3 protein being the main enzyme in cells grown in the presence of molybdenum. The putatively membrane-associated formate dehydrogenase is detected only at low levels after growth with tungsten. Purification of the three enzymes and metal analysis shows that FdhABC3 specifically incorporates Mo, whereas FdhAB can incorporate both metals. The FdhAB enzyme has a much higher catalytic efficiency than the other two. Since sulfate reducers are likely to experience high sulfide concentrations that may result in low Mo bioavailability, the ability to use W is likely to constitute a selective advantage.
机译:甲酸盐是自然环境中硫酸盐还原细菌的重要能量底物,并且在这些生物中已报道了含钼和含钨的甲酸脱氢酶。在这项工作中,我们研究了这两种金属对在Desulfovibrio vulgaris Hildenborough基因组中编码的三种甲酸脱氢酶水平的影响,其中乳酸,甲酸或氢为电子供体。使用蛋白质印迹分析,定量实时PCR,活性染色的凝胶和蛋白质纯化,我们表明存在金属依赖的调节机制,导致二聚体FdhAB蛋白是存在于细胞中的主要酶。钨和三聚体FdhABC3蛋白是在钼存在下生长的细胞中的主要酶。与钨一起生长后,仅在低水平上检测到了可能的膜相关甲酸脱氢酶。三种酶的纯化和金属分析表明,FdhABC3特异性掺入Mo,而FdhAB可以掺入两种金属。 FdhAB酶比其他两种具有更高的催化效率。由于硫酸盐还原剂可能会经历高浓度的硫化物,这可能会导致Mo生物利用度降低,因此使用W的能力可能会构成选择性优势。

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