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首页> 外文期刊>Journal of bacteriology >Assimilatory sulfur metabolism in marine microorganisms: characteristics and regulation of sulfate transport in Pseudomonas halodurans and Alteromonas luteo-violaceus.
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Assimilatory sulfur metabolism in marine microorganisms: characteristics and regulation of sulfate transport in Pseudomonas halodurans and Alteromonas luteo-violaceus.

机译:海洋微生物中的同化硫代谢:卤代假单胞菌和黄褐线虫中硫酸盐转运的特征和调控。

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Sulfate transport capacity was not regulated by cysteine, methionine, or glutathione in Pseudomonas halodurans, but growth on sulfate or thiosulfate suppressed transport. Subsequent sulfur starvation of cultures grown on all sulfur sources except glutathione stimulated uptake. Only methionine failed to regulate sulfate transport in Alteromonas luteo-violaceus, and sulfur starvation of all cultures enhanced transport capacity. During sulfur starvation of sulfate-grown cultures of both bacteria, the increase in transport capacity was mirrored by a decrease in the low-molecular-weight organic sulfur pool. Little metabolism of endogenous inorganic sulfate occurred. Cysteine was probably the major regulatory compound in A. luteo-violaceus, but an intermediate in sulfate reduction, between sulfate and cysteine, controlled sulfate transport in P. halodurans. Kinetic characteristics of sulfate transport in the marine bacteria were similar to those of previously reported nonmarine systems in spite of significant regulatory differences. Sulfate and thiosulfate uptake in P. halodurans responded identically to inhibitors, were coordinately regulated by growth on various sulfur compounds and sulfur starvation, and were mutually competitive inhibitors of transport, suggesting that they were transported by the same mechanism. The affinity of P. halodurans for thiosulfate was much greater than for sulfate.
机译:卤代假单胞菌中硫酸盐的运输能力不受半胱氨酸,蛋氨酸或谷胱甘肽的调节,但是硫酸盐或硫代硫酸盐的生长抑制了运输。随后在除谷胱甘肽刺激的所有硫源上生长的培养物中的硫饥饿。只有蛋氨酸不能调节黄褐线虫中硫酸盐的转运,所有培养物中的硫缺乏都会提高转运能力。在两种细菌的​​硫酸盐生长培养物的硫饥饿期间,低分子量有机硫池的减少反映了运输能力的提高。内源性无机硫酸盐几乎没有代谢。半胱氨酸可能是黄曲霉中的主要调节化合物,但是硫酸盐还原的中间体,介于硫酸盐和半胱氨酸之间,控制了P. halodurans中的硫酸盐运输。尽管有显着的调节差异,但海洋细菌中硫酸盐转运的动力学特征与先前报道的非海洋系统相似。嗜盐假单胞菌中硫酸盐和硫代硫酸盐的吸收对抑制剂的反应相同,受各种硫化合物的生长和硫缺乏的影响而受到协调调节,并且是相互竞争的运输抑制剂,表明它们是通过相同的机理运输的。卤代疟原虫对硫代硫酸盐的亲和力远大于对硫酸盐的亲和力。

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