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首页> 外文期刊>Molecular Microbiology >Cysteine desulphurase plays an important role in environmental adaptation of the hyperthermophilic archaeon Thermococcus kodakarensis
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Cysteine desulphurase plays an important role in environmental adaptation of the hyperthermophilic archaeon Thermococcus kodakarensis

机译:半胱氨酸脱硫酶在超嗜热古柯嗜热球菌的环境适应中起着重要作用

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摘要

The sulphur atoms of sulphur-containing cofactors that are essential for numerous cellular functions in living organisms originate from L-cysteine via cysteine desulphurase (CSD) activity. However, many (hyper)thermophilic archaea, which thrive in solfataric fields and are positioned near the root of the evolutionary tree of life, lack CSD orthologues. The existence of CSD orthologues in a subset of (hyper)thermophilic archaea is of interest with respect to the evolution of sulphur-trafficking systems for the cofactors. This study demonstrates that the disruption of the csd gene of Thermococcus kodakarensis, a facultative elemental sulphur (S-0)-reducing hyperthermophilic archaeon, encoding Tk-CSD, conferred a growth defect evident only in the absence of S-0, and that growth can be restored by the addition of S-0, but not sulphide. We show that the csd gene is not required for biosynthesis of thiamine pyrophosphate or molybdopterin, irrespective of the presence or absence of S-0, but is necessary for iron-sulphur cluster biosynthesis in the absence of S-0. Recombinant form of Tk-CSD expressed in Escherichia coli was obtained and it was found to catalyse the desulphuration of L-cysteine. The obtained data suggest that hyperthermophiles might benefit from a capacity for CSD-dependent iron-sulphur cluster biogenesis, which allows them to thrive outside solfataric environments.
机译:生命有机体中许多细胞功能所必需的含硫辅因子的硫原子通过半胱氨酸脱硫酶(CSD)活性源自L-半胱氨酸。然而,许多(超)嗜热古细菌在CMF领域繁衍生息,并且位于进化树的根附近,缺乏CSD直系同源物。关于(超)嗜热古细菌中CSD直向同源物的存在,对于辅因子的硫转运系统的发展是令人感兴趣的。这项研究表明,编码Tk-CSD的兼性元素硫(S-0)还原型超嗜热古细菌Thermococcus kodakarensis的csd基因的破坏赋予了仅在没有S-0时才明显的生长缺陷。可以通过添加S-0来恢复,但不能通过硫化物来恢复。我们显示,无论是否存在S-0,csd基因对于硫胺焦磷酸盐或钼蝶呤的生物合成均不是必需的,但在不存在S-0的情况下,铁硫簇生物合成是必需的。获得了在大肠杆菌中表达的Tk-CSD的重组形式,并发现其可催化L-半胱氨酸的脱硫。获得的数据表明,超嗜热菌可能受益于CSD依赖的铁-硫团簇生物发生的能力,这使它们能够在有机溶剂环境中壮成长。

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