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嗜热酶及其生物技术潜力。

Thermophilic enzymes and their biotechnological potential.

作者信息

Lasa I, Berenguer J

机构信息

Centro de Biología Molecular, Universidad Autónoma de Madrid-CSIC, Spain.

出版信息

Microbiologia. 1993 Dec;9(2):77-89.

PMID:8172694
Abstract

The ability of many microorganisms to grow at high temperatures has held a particular fascination for microbiologists and biochemists since a long time. As any of their cellular components, their proteins are inherently more stable to heat than those of conventional organisms. This thermal stability is not due to any specific characteristic, but results a consequence of various changes which contribute to the whole stability of the protein in an additive manner. These enzymes are not only more thermostable, but also more resistant to chemical agents than their mesophilic homologous, what makes them extremely interesting for industrial processes. Despite this, most of the enzymes used at present in industrial processes have been isolated from mesophiles due to the limited knowledge and difficulties to grow thermophiles in high scale. The objective of this review is to consider briefly the importance of the thermostability in order to apply enzymes in the industry, and to overview the most recent advances in the identification of new thermophilic organisms and enzymes. Furthermore, the recent development of genetic model systems for moderate and extreme thermophiles are referred.

摘要

长期以来,许多微生物在高温下生长的能力一直吸引着微生物学家和生物化学家。作为它们的任何细胞成分,其蛋白质本质上比传统生物体的蛋白质对热更稳定。这种热稳定性并非由于任何特定特征,而是多种变化共同作用的结果,这些变化以累加的方式有助于蛋白质的整体稳定性。这些酶不仅更耐热,而且比它们的嗜温同源酶对化学试剂更具抗性,这使得它们在工业过程中极具吸引力。尽管如此,由于知识有限以及大规模培养嗜热菌存在困难,目前工业过程中使用的大多数酶都是从嗜温菌中分离出来的。本综述的目的是简要考虑热稳定性在工业应用酶方面的重要性,并概述在鉴定新的嗜热生物和酶方面的最新进展。此外,还提及了适温嗜热菌和极端嗜热菌遗传模型系统的最新发展。

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