Cold Adaptation and Molecular Evolution of Enzyme

A. Yamagishi
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引用次数: 1

Abstract

There are many cold places around the Earth. From the psychrophiles isolated from those environments, cold-adapted enzymes have been isolated. Cold-adapted enzymes have sufficient activity and sufficient substrate-affinity to support the growth, and show low thermo-stability. Artificially cold-adapted enzymes have been obtained by evolutionary engineering from thermophile enzymes. The analysis revealed one of the cold-adaptation mechanisms: the cold-adapted enzymes showed lower enthalpy of substrate-binding thus providing lower activation enthalpy for high activity at low temperature. Some of the cold-adapted enzymes retained high thermal stability of the original thermophile enzyme. The results suggest that it is possible to reconcile high stability with high activity at low temperature. However, the issue needs further investigation. It has been elucidated that life evolved from the hyperthermophilic common ancestor (Commonote). Accordingly, the in vitro evolution experiments for obtaining cold-adapted enzymes from thermophile enzyme are, in a sense, reproducing the evolution of life.
冷适应与酶的分子进化
地球上有许多寒冷的地方。从这些环境中分离出来的嗜冷菌中,分离出了适应冷的酶。冷适应酶具有足够的活性和足够的底物亲和力来支持生长,并表现出较低的热稳定性。从嗜热酶的基础上,通过进化工程获得了人工冷适应酶。分析揭示了冷适应的机制之一:冷适应酶具有较低的底物结合焓,从而为低温下的高活性提供了较低的激活焓。一些冷适应酶保留了原嗜热酶的高热稳定性。结果表明,在低温下,高稳定性和高活性是可以调和的。然而,这个问题需要进一步调查。生命是从嗜热的共同祖先(Commonote)进化而来的。因此,从嗜热酶获得冷适应酶的体外进化实验,在某种意义上是在再现生命的进化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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