Marx J C, Blaise V, Collins T, D'Amico S, Delille D, Gratia E, Hoyoux A, Huston A L, Sonan G, Feller G, Gerday C
Laboratory of Biochemistry, Institute of Chemistry B6, University of Liège, Liège B-4000, Belgium.
Cell Mol Biol (Noisy-le-grand). 2004 Jul;50(5):643-55.
Studies on psychrophilic enzymes to determine the structural features important for cold-activity have attracted increased attention in the last few years. This enhanced interest is due to the attractive properties of such proteins, i.e. a high specific activity and a low thermal stability, and thus, these enzymes constitute a tremendous potential for fundamental research and biotechnological applications. This review examines the impact of low temperatures on life, the diversity of adaptation to counteract these effects and gives an overview of the features proposed to account for low thermal stability and cold-activity, following the chronological order of the catalytic cycle phases. Moreover, we present an overview of recent techniques used in the analysis of the flexibility of a protein structure which is an important concept in cold-adaptation; an overview of biotechnological potential of psychrophilic enzymes and finally, a few frequently asked questions about cold-adaptation and their possible answers.
近年来,关于嗜冷酶的研究以确定对冷活性重要的结构特征受到了越来越多的关注。这种兴趣的增加是由于这类蛋白质具有吸引人的特性,即高比活性和低热稳定性,因此,这些酶在基础研究和生物技术应用方面具有巨大潜力。本综述按照催化循环阶段的时间顺序,研究了低温对生命的影响、为抵消这些影响而进行的适应性多样性,并概述了为解释低热稳定性和冷活性而提出的特征。此外,我们还概述了用于分析蛋白质结构灵活性的最新技术,这是冷适应中的一个重要概念;嗜冷酶的生物技术潜力概述,最后是一些关于冷适应的常见问题及其可能的答案。