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The Proteome and Lipidome of Thermococcus kodakarensis across the Stationary Phase

机译:平稳期柯达卡氏球菌的蛋白质组和脂质组

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摘要

The majority of cells in nature probably exist in a stationary-phase-like state, due to nutrient limitation in most environments. Studies on bacteria and yeast reveal morphological and physiological changes throughout the stationary phase, which lead to an increased ability to survive prolonged nutrient limitation. However, there is little information on archaeal stationary phase responses. We investigated protein- and lipid-level changes in Thermococcus kodakarensis with extended time in the stationary phase. Adaptations to time in stationary phase included increased proportion of membrane lipids with a tetraether backbone, synthesis of proteins that ensure translational fidelity, specific regulation of ABC transporters (upregulation of some, downregulation of others), and upregulation of proteins involved in coenzyme production. Given that the biological mechanism of tetraether synthesis is unknown, we also considered whether any of the protein-level changes in T. kodakarensis might shed light on the production of tetraether lipids across the same period. A putative carbon-nitrogen hydrolase, a TldE (a protease in Escherichia coli) homologue, and a membrane bound hydrogenase complex subunit were candidates for possible involvement in tetraether-related reactions, while upregulation of adenosylcobalamin synthesis proteins might lend support to a possible radical mechanism as a trigger for tetraether synthesis.
机译:由于大多数环境中的营养限制,自然界中的大多数细胞可能以固定相状态存在。细菌和酵母菌的研究揭示了整个固定相的形态和生理变化,从而提高了在长期营养限制条件下生存的能力。但是,关于古细菌静止期反应的信息很少。我们调查了在固定相中延长时间的柯达热球菌的蛋白质和脂质水平的变化。适应固定时间的方法包括增加具有四醚主链的膜脂质的比例,确保翻译保真度的蛋白质合成,ABC转运蛋白的特异性调节(某些蛋白的上调,其他蛋白的下调)以及参与辅酶生产的蛋白的上调。鉴于四醚合成的生物学机理尚不清楚,我们还考虑了柯达氏衣原体中任何蛋白质水平的变化是否可能为同一时期四醚脂质的产生提供了启示。可能的碳氮水解酶,TldE(大肠杆菌中的蛋白酶)同系物和膜结合的氢酶复合物亚基可能参与四醚相关反应,而腺苷钴胺素合成蛋白的上调可能为可能的自由基机制提供支持引发四醚合成。

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