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冷休克反应

The Cold Shock Response.

作者信息

Phadtare Sangita, Inouye Masayori

出版信息

EcoSal Plus. 2008 Sep;3(1). doi: 10.1128/ecosalplus.5.4.2.

DOI:10.1128/ecosalplus.5.4.2
PMID:26443733
Abstract

This review focuses on the cold shock response of Escherichia coli. Change in temperature is one of the most common stresses that an organism encounters in nature. Temperature downshift affects the cell on various levels: (i) decrease in the membrane fluidity; (ii) stabilization of the secondary structures of RNA and DNA; (iii) slow or inefficient protein folding; (iv) reduced ribosome function, affecting translation of non-cold shock proteins; (v) increased negative supercoiling of DNA; and (vi) accumulation of various sugars. Cold shock proteins and certain sugars play a key role in dealing with the initial detrimental effect of cold shock and maintaining the continued growth of the organism at low temperature. CspA is the major cold shock protein of E. coli, and its homologues are found to be widespread among bacteria, including psychrophilic, psychrotrophic, mesophilic, and thermophilic bacteria, but are not found in archaea or cyanobacteria. Significant, albeit transient, stabilization of the cspA mRNA immediately following temperature downshift is mainly responsible for its cold shock induction. Various approaches were used in studies to detect cold shock induction of cspA mRNA. Sugars are shown to confer protection to cells undergoing cold shock. The study of the cold shock response has implications in basic and health-related research as well as in commercial applications. The cold shock response is elicited by all types of bacteria and affects these bacteria at various levels, such as cell membrane, transcription, translation, and metabolism.

摘要

本综述聚焦于大肠杆菌的冷休克反应。温度变化是生物体在自然界中遇到的最常见应激之一。温度下降会在多个层面影响细胞:(i)膜流动性降低;(ii)RNA和DNA二级结构稳定;(iii)蛋白质折叠缓慢或效率低下;(iv)核糖体功能降低,影响非冷休克蛋白的翻译;(v)DNA负超螺旋增加;(vi)各种糖类积累。冷休克蛋白和某些糖类在应对冷休克的初始有害影响以及维持生物体在低温下的持续生长方面发挥着关键作用。CspA是大肠杆菌的主要冷休克蛋白,其同源物在细菌中广泛存在,包括嗜冷菌、嗜冷嗜温菌、嗜温菌和嗜热菌,但在古细菌或蓝细菌中未发现。温度下降后立即出现的cspA mRNA显著(尽管是短暂的)稳定主要负责其冷休克诱导。研究中使用了各种方法来检测cspA mRNA的冷休克诱导。糖类被证明能为遭受冷休克的细胞提供保护。冷休克反应的研究在基础研究、健康相关研究以及商业应用中都具有重要意义。所有类型的细菌都会引发冷休克反应,并在多个层面影响这些细菌,如细胞膜、转录、翻译和代谢。

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The Cold Shock Response.冷休克反应
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