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首页> 外文期刊>Extremophiles >Distinct features of protein folding by the GroEL system from a psychrophilic bacterium, Colwellia psychrerythraea 34H
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Distinct features of protein folding by the GroEL system from a psychrophilic bacterium, Colwellia psychrerythraea 34H

机译:嗜冷细菌Colwellia psychrerythraea 34H通过GroEL系统折叠蛋白质的独特特征

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We investigated the protein folding mechanism of the GroEL system of a psychrophilic bacterium, Colwellia psychrerythraea 34H. The amount of mRNA of the groESL operon of C. psychrerythraea was increased about 6-fold after a temperature upshift from 8 to 18 °C for 30 min, suggesting that this temperature causes heat stress in this bacterium. A σ32-type promoter was found upstream of the groESL, suggesting that the C. psychrerythraea groESL is regulated by the σ32 system, like the groESL in E. coli. The maximum ATPase and CTPase activities of CpGroEL were observed at 45 and 35 °C, respectively, which are much higher than the growth temperatures of C. psychrerythraea. We found that the refolding activity of the CpGroEL system in the presence of ATP is lower than that in the presence of CTP. This suggests that ATP is not the optimum energy source of the CpGroEL system. Analyses for the interaction of CpGroEL–CpGroES revealed that CTP could weaken this interaction, resulting in effective refolding function of the CpGroEL system. From these findings, we consider that the CpGroEL system possesses an energy-saving mechanism for avoiding excess consumption of ATP to ensure growth in a low-temperature environment.
机译:我们研究了嗜冷细菌Collwellia psychrerythraea 34H的GroEL系统的蛋白质折叠机制。温度从8升至18°C持续30分钟后,克氏梭菌groESL操纵子的mRNA量增加了约6倍,这表明该温度在该细菌中引起热应激。在groESL的上游发现了一个σ32型启动子,这表明拟南芥groESL受到σ32系统的调控,就像大肠杆菌中的groESL一样。 CpGroEL的最大ATPase和CTPase活性分别在45和35°C时观察到,远高于Psych.ryrerythraea的生长温度。我们发现,存在ATP时CpGroEL系统的重折叠活性低于存在CTP时的重折叠活性。这表明ATP不是CpGroEL系统的最佳能源。对CpGroEL–CpGroES的相互作用的分析表明,CTP可以削弱这种相互作用,从而导致CpGroEL系统具有有效的重折叠功能。根据这些发现,我们认为CpGroEL系统具有节能机制,可避免ATP的过量消耗,从而确保在低温环境下的生长。

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