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首页> 外文期刊>Extremophiles: Life under extreme conditions >Hydroxybutyrate prevents protein aggregation in the halotolerant bacterium Pseudomonas sp. CT13 under abiotic stress
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Hydroxybutyrate prevents protein aggregation in the halotolerant bacterium Pseudomonas sp. CT13 under abiotic stress

机译:羟基丁酸酯可防止盐类细菌假单胞菌(Pseudomonas sp。)中的蛋白质聚集。非生物胁迫下的CT13

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摘要

Polyhydroxybutyrate (PHB), a typical carbon and energy storage compound, is widely found in Bacteria and Archae domains. This polymer is produced in response to conditions of physiological stress. PHB is composed of repeating units of β-hydroxybutyrate (R-3HB). It has been previously shown that R-3HB functions as an osmolyte in extremophile strains. In this study, Pseudomonas sp. CT13, a halotolerant bacterium, and its PHB synthase-minus mutant (phaC) were used to analyze the chaperone role of R-3HB. The production of this compound was found to be essential to salt stress resistance and positively correlated with salt concentration, suggesting that PHB monomer acts as a compatible solute in Pseudomonas sp. CT13. R-3HB accumulation was also associated with the prevention of protein aggregation under combined salt and thermal stresses in Pseudomonas sp. CT13. Physiological concentrations of R-3HB efficiently reduced citrate synthase (CS) aggregation and stabilized the enzymatic activities of CS during thermal stress. Docking analysis of the CS/R-3HB interaction predicted the stability of this complex under physiological concentrations of R-3HB. Thus, in vivo, in vitro and in silico analyses suggest that R-3HB can act as a chemical chaperone.
机译:聚羟基丁酸酯(PHB)是一种典型的碳和能量存储化合物,广泛存在于细菌和古细菌领域。该聚合物是响应生理压力条件而产生的。 PHB由β-羟基丁酸酯(R-3HB)的重复单元组成。先前已经表明,R-3HB在极端嗜热菌菌株中起渗透剂的作用。在这项研究中,假单胞菌属。 CT13,一种耐盐细菌,及其PHB合酶-负突变体(phaC)用于分析R-3HB的分子伴侣作用。发现该化合物的产生对于抗盐胁迫是必不可少的,并且与盐浓度成正相关,表明PHB单体在假单胞菌属种中充当相容溶质。 CT13。 R-3HB积累还与假单胞菌sp。的盐和热胁迫联合下蛋白质聚集的预防有关。 CT13。生理浓度的R-3HB有效降低了柠檬酸酯合酶(CS)的聚集并稳定了CS在热胁迫期间的酶活性。 CS / R-3HB相互作用的对接分析预测了该复合物在生理浓度的R-3HB下的稳定性。因此,体内,体外和计算机分析表明R-3HB可以充当化学伴侣。

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