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Minimal sulfur requirement for growth and sulfur-dependent metabolism of the hyperthermophilic archaeon Staphylothermus marinus

机译:嗜热古细菌金黄色葡萄球菌生长和硫依赖性代谢的最低硫需求

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摘要

Staphylothermus marinus is an anaerobic hyperthermophilic archaeon that uses peptides as carbon and energy sources. Elemental sulfur (S°) is obligately required for its growth and is reduced to H2S. The metabolic functions and mechanisms of S° reduction were explored by examining S°-dependent growth and activities of key enzymes present in this organism. All three forms of S° tested—sublimed S°, colloidal S° and polysulfide—were used by S. marinus, and no other sulfur-containing compounds could replace S°. Elemental sulfur did not serve as physical support but appeared to function as an electron acceptor. The minimal S° concentration required for optimal growth was 0.05% (w/v). At this concentration, there appeared to be a metabolic transition from H2 production to S° reduction. Some enzymatic activities related to S°-dependent metabolism, including sulfur reductase, hydrogenase, glutamate dehydrogenase and electron transfer activities, were detected in cell-free extracts of S. marinus. These results indicate that S° plays an essential role in the heterotrophic metabolism of S. marinus. Reducing equivalents generated by the oxidation of amino acids from peptidolysis may be transferred to sulfur reductase and hydrogenase, which then catalyze the production of H2S and H2, respectively.
机译:Staphylothermus marinus是一种厌氧的超高温古细菌,它使用肽作为碳和能源。元素硫(S°)是其生长必不可少的元素,并被还原为H2S。通过检查依赖于S°的生长和该生物中存在的关键酶的活性,探索了S°降低的代谢功能和机制。经测试的S°的所有三种形式(升华的S°,胶体S°和多硫化物)已被S. marinus使用,没有其他含硫化合物可以替代S°。元素硫不能用作物理载体,但似乎可以用作电子受体。最佳生长所需的最低S°浓度为0.05%(w / v)。在此浓度下,从H2产生到S°减少似乎有新陈代谢转变。在无细胞链球菌提取物中检测到一些与S°依赖代谢有关的酶活性,包括硫还原酶,氢化酶,谷氨酸脱氢酶和电子转移活性。这些结果表明S°在S.marinus的异养代谢中起重要作用。由肽水解产生的氨基酸氧化产生的还原当量可以转移到硫还原酶和氢化酶,然后分别催化H2S和H2的产生。

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  • 作者

    Hao, Xiaolei; Ma, Kesen;

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  • 年度 2003
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  • 原文格式 PDF
  • 正文语种 en
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