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膜脂脂肪酸在冷适应中的作用。

Role of membrane lipid fatty acids in cold adaptation.

作者信息

Chintalapati S, Kiran M D, Shivaji S

机构信息

Centre for Cellular and Molecular Biology, Uppal Road, Hyderabad 500 007, India.

出版信息

Cell Mol Biol (Noisy-le-grand). 2004 Jul;50(5):631-42.

Abstract

Psychrophilic and psychrotolerant bacteria have evolved various strategies to adapt to low temperature. One important strategy, which is crucial to the survival of the cell at low temperature, relates to the ability of the cell to modulate the fluidity of the membrane. Bacteria in general modulate membrane fluidity by altering their fatty acid composition. But, bacteria could also achieve the same by various other strategies such as by altering the lipid head group, the protein content of the membrane, the type of carotenoids synthesized, the fatty acid chain length and the proportion of cis to trans fatty acids. In addition bacteria have a two-component signal transduction pathway consisting of a membrane-bound sensor and a soluble cytoplasmic response regulator involved in the perception and transduction of low temperature signals. This review on cold adaptation highlights the various strategies by which bacteria modulate the fluidity of the membrane and the process by which it senses and transduces the low temperature signal.

摘要

嗜冷菌和耐冷菌已经进化出各种策略来适应低温。一种对细胞在低温下生存至关重要的重要策略,与细胞调节膜流动性的能力有关。一般来说,细菌通过改变其脂肪酸组成来调节膜流动性。但是,细菌也可以通过各种其他策略来达到同样的效果,例如改变脂质头部基团、膜的蛋白质含量、合成的类胡萝卜素类型、脂肪酸链长度以及顺式脂肪酸与反式脂肪酸的比例。此外,细菌有一个双组分信号转导途径,由一个膜结合传感器和一个可溶性细胞质应答调节因子组成,参与低温信号的感知和转导。这篇关于冷适应的综述强调了细菌调节膜流动性的各种策略以及它感知和转导低温信号的过程。

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