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Physiological responses of Escherichia coli exposed to different heat-stress kinetics

机译:暴露于不同热应激动力学的大肠杆菌的生理反应

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摘要

The effects of heat-stress kinetics on the viability of Escherichia coli were investigated. Cells were exposed to heat-stress treatments extending from 30 to 50°C, with either a slope (40 min) or a shock (10 s), both followed by a 1-h plateau at 50°C in nutritive medium. A higher survival rate was observed after the slope than after the shock, when both were followed by a plateau, so the heat slope induced a certain degree of thermotolerance. This tolerance was partly (i) linked to de novo protein synthesis during the subsequent plateau phase, and (ii) abolished after rapid cooling from 50 to 30°C, which means that cellular components with rapidly reversible thermal properties are involved in this type of thermotolerance. The heat-slope-induced thermotolerance was chiefly linked to the maintenance of the plasma membrane integrity (preservation of structure, fluidity, and permeability), and not to GroEL or DnaK overexpression. Moreover, the high level of cell mortality induced by the heat shock could be related to changes in the membrane integrity.
机译:研究了热应激动力学对大肠杆菌活力的影响。将细胞暴露于从30到50°C的热应激处理中,进行倾斜(40分钟)或冲击(10 s),然后在营养培养基中于50°C进行1小时的平稳处理。斜率后的观察到的存活率高于电击后的存活率,当两者都达到平稳时,热斜率会引起一定程度的耐热性。这种耐受性的部分原因是(i)在随后的平台期与从头蛋白质合成有关,并且(ii)在从50到30°C的快速冷却后被取消,这意味着这种类型的细胞涉及具有快速可逆热特性的细胞成分。耐热性。热斜率诱导的耐热性主要与质膜完整性的维持(结构,流动性和渗透性的保持)有关,与GroEL或DnaK的过表达无关。而且,由热激引起的高水平的细胞死亡可能与膜完整性的变化有关。

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