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嗜热古菌的分子生物学

Molecular biology of hyperthermophilic Archaea.

作者信息

van der Oost J, Ciaramella M, Moracci M, Pisani F M, Rossi M, de Vos W M

机构信息

Department of Microbiology, Wageningen Agricultural University, The Netherlands.

出版信息

Adv Biochem Eng Biotechnol. 1998;61:87-115. doi: 10.1007/BFb0102290.

Abstract

The sequences of a number of archaeal genomes have recently been completed, and many more are expected shortly. Consequently, the research of Archaea in general and hyperthermophiles in particular has entered a new phase, with many exciting discoveries to be expected. The wealth of sequence information has already led, and will continue to lead to the identification of many enzymes with unique properties, some of which have potential for industrial applications. Subsequent functional genomics will help reveal fundamental matters such as details concerning the genetic, biochemical and physiological adaptation of extremophiles, and hence give insight into their genomic evolution, polypeptide structure-function relations, and metabolic regulation. In order to optimally exploit many unique features that are now emerging, the development of genetic systems for hyperthermophilic Archaea is an absolute requirement. Such systems would allow the application of this class of Archaea as so-called "cell factories": (i) expression of certain archaeal enzymes for which no suitable conventional (mesophilic bacterial or eukaryal) systems are available, (ii) selection for thermostable variants of potentially interesting enzymes from mesophilic origin, and (iii) the development of in vivo production systems by metabolic engineering. An overview is given of recent insight in the molecular biology of hyperthermophilic Archaea, as well as of a number of promising developments that should result in the generation of suitable genetic systems in the near future.

摘要

最近已经完成了许多古细菌基因组的测序,预计不久还会有更多。因此,古细菌尤其是嗜热古细菌的研究进入了一个新阶段,有望有许多令人兴奋的发现。丰富的序列信息已经并将继续导致许多具有独特性质的酶被鉴定出来,其中一些具有工业应用潜力。随后的功能基因组学将有助于揭示一些基本问题,比如嗜极端微生物在遗传、生化和生理适应方面的细节,从而深入了解它们的基因组进化、多肽结构与功能的关系以及代谢调控。为了最佳地利用目前正在出现的许多独特特征,开发嗜热古细菌的遗传系统是绝对必要的。这样的系统将使这类古细菌能够作为所谓的“细胞工厂”来应用:(i)表达某些没有合适的常规(嗜温细菌或真核生物)系统可用的古细菌酶;(ii)从嗜温来源中筛选潜在有趣酶的耐热变体;(iii)通过代谢工程开发体内生产系统。本文概述了嗜热古细菌分子生物学的最新见解,以及一些有望在不久的将来产生合适遗传系统的有前景的进展。

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