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Transcriptional response of Desulfovibrio vulgaris Hildenborough to oxidative stress mimicking environmental conditions

机译:寻常脱硫弧菌希尔登伯勒对模拟环境条件的氧化应激的转录响应

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摘要

Sulfate-reducing bacteria (SRB) are anaerobes readily found in oxic–anoxic interfaces. Multiple defense pathways against oxidative conditions were identified in these organisms and proposed to be differentially expressed under different concentrations of oxygen, contributing to their ability to survive oxic conditions. In this study, Desulfovibrio vulgaris Hildenborough cells were exposed to the highest concentration of oxygen that SRB are likely to encounter in natural habitats, and the global transcriptomic response was determined. Three hundred and seven genes were responsive, with cellular roles in energy metabolism, protein fate, cell envelope and regulatory functions, including multiple genes encoding heat shock proteins, peptidases and proteins with heat shock promoters. Of the oxygen reducing mechanisms of D. vulgaris only the periplasmic hydrogen-dependent mechanism was up-regulated, involving the [NiFeSe] hydrogenase, formate dehydrogenase(s) and the Hmc membrane complex. The oxidative defense response concentrated on damage repair by metal-free enzymes. These data, together with the down-regulation of the ferric uptake regulator operon, which restricts the availability of iron, and the lack of response of the peroxide-sensing regulator operon, suggest that a major effect of this oxygen stress is the inactivation and/or degradation of multiple metalloproteins present in D. vulgaris as a consequence of oxidative damage to their metal clusters.
机译:硫酸盐还原菌(SRB)是厌氧菌,容易在有氧-缺氧界面中发现。在这些生物中发现了多种针对氧化条件的防御途径,并提出了在不同浓度的氧气中差异表达的途径,这有助于它们在氧化条件下生存。在这项研究中,寻常脱硫弧菌希尔登伯勒细胞暴露于SRB在自然生境中可能遇到的最高浓度的氧气,并确定了总体转录组反应。 377个基因具有响应性,在能量代谢,蛋白质命运,细胞包膜和调节功能中具有细胞作用,包括编码热激蛋白,肽酶和具有热激启动子的蛋白的多个基因。在寻常小球藻的氧还原机制中,仅周质氢依赖性机制被上调,涉及[NiFeSe]氢化酶,甲酸盐脱氢酶和Hmc膜复合物。氧化防御反应集中在无金属酶对损伤的修复上。这些数据,再加上铁摄取调节剂操纵子的下调,从而限制了铁的可用性,以及过氧化物感测调节子操纵子缺乏响应,表明这种氧胁迫的主要作用是失活和/由于其金属簇的氧化损伤,导致寻常小球藻中多​​种金属蛋白的降解或降解。

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