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哺乳动物细胞中的冷休克反应。

Cold shock response in mammalian cells.

作者信息

Fujita J

机构信息

Department of Clinical Molecular Biology, Faculty of Medicine, Kyoto University, Japan.

出版信息

J Mol Microbiol Biotechnol. 1999 Nov;1(2):243-55.

Abstract

Compared to bacteria and plants, the cold shock response has attracted little attention in mammals except in some areas such as adaptive thermogenesis, cold tolerance, storage of cells and organs, and recently, treatment of brain damage and protein production. At the cellular level, some responses of mammalian cells are similar to microorganisms; cold stress changes the lipid composition of cellular membranes, and suppresses the rate of protein synthesis and cell proliferation. Although previous studies have mostly dealt with temperatures below 20 degrees C, mild hypothermia (32 degrees C) can change the cell's response to subsequent stresses as exemplified by APG-1, a member of the HSP110 family. Furthermore, 32 degrees C induces expression of CIRP (cold-inducible RNA-binding protein), the first cold shock protein identified in mammalian cells, without recovery at 37 degrees C. Remniscent of HSP, CIRP is also expressed at 37 degrees C and developmentary regulated, possibly working as an RNA chaperone. Mammalian cells are metabolically active at 32 degrees C, and cells may survive and respond to stresses with different strategies from those at 37 degrees C. Cellular and molecular biology of mammalian cells at 32 degrees C is a new area expected to have considerable implications for medical sciences and possibly biotechnology.

摘要

与细菌和植物相比,除了在适应性产热、耐寒性、细胞和器官储存等一些领域,以及最近在脑损伤治疗和蛋白质生产方面,冷休克反应在哺乳动物中很少受到关注。在细胞水平上,哺乳动物细胞的一些反应与微生物相似;冷应激会改变细胞膜的脂质组成,并抑制蛋白质合成速率和细胞增殖。尽管先前的研究大多涉及低于20摄氏度的温度,但轻度低温(32摄氏度)会改变细胞对后续应激的反应,如热休克蛋白110家族成员APG-1所示。此外,32摄氏度会诱导冷诱导RNA结合蛋白(CIRP)的表达,这是在哺乳动物细胞中发现的第一个冷休克蛋白,在37摄氏度时不会恢复。与热休克蛋白类似,CIRP在37摄氏度时也有表达且受发育调控,可能作为一种RNA伴侣发挥作用。哺乳动物细胞在32摄氏度时具有代谢活性,细胞可能以与37摄氏度时不同的策略存活并应对应激。32摄氏度下哺乳动物细胞的细胞和分子生物学是一个新领域,预计对医学科学以及可能的生物技术有重大影响。

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