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Bacterial adaptation to cold

机译:细菌对寒冷的适应

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Micro-organisms react to a rapid temperature downshift by triggering a physiological response to ensure survival in unfavourable conditions. Adaptation includes changes in membrane composition and in the translation and transcription machineries. The cold shock response leads to a growth block and overall repression of translation; however, there is the induction of a set of specific proteins that help to tune cell metabolism and readjust it to the new conditions. For a mesophile like E. coli, the adaptation process takes about 4 h. Although the bacterial cold shock response was discovered over two decades ago we are still far from understanding this process. In this review, we aim to describe current knowledge, focusing on the functions of RNA-interacting proteins and RNases involved in cold shock adaptation.
机译:微生物通过触发生理反应来对快速的温度下降做出反应,以确保在不利条件下的生存。适应包括膜成分以及翻译和转录机制的改变。冷休克反应会导致生长受阻并完全抑制翻译;但是,诱导了一组特定的蛋白质,这些蛋白质有助于调节细胞的新陈代谢并将其重新调整至新的条件。对于像大肠杆菌这样的嗜温菌,适应过程大约需要4小时。尽管细菌冷休克反应是在二十多年前发现的,但我们仍然距离这一过程还很远。在这篇综述中,我们旨在描述当前的知识,重点是与冷休克适应有关的RNA相互作用蛋白和RNase的功能。

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