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酵母中的病毒杀伤系统:从分子生物学到应用

The viral killer system in yeast: from molecular biology to application.

作者信息

Schmitt Manfred J, Breinig Frank

机构信息

Angewandte Molekularbiologie (FR 8.3 -- Mikrobiologie), Universität des Saarlandes, Im Stadtwald, Gebäude 2, D-66123 Saarbrücken, Germany.

出版信息

FEMS Microbiol Rev. 2002 Aug;26(3):257-76. doi: 10.1111/j.1574-6976.2002.tb00614.x.

Abstract

Since the initial discovery of the yeast killer system almost 40 years ago, intensive studies have substantially strengthened our knowledge in many areas of biology and provided deeper insights into basic aspects of eukaryotic cell biology as well as into virus-host cell interactions and general yeast virology. Analysis of killer toxin structure, synthesis and secretion has fostered understanding of essential cellular mechanisms such as post-translational prepro-protein processing in the secretory pathway. Furthermore, investigation of the receptor-mediated mode of toxin action proved to be an effective means for dissecting the molecular structure and in vivo assembly of yeast and fungal cell walls, providing important insights relevant to combating infections by human pathogenic yeasts. Besides their general importance in understanding eukaryotic cell biology, killer yeasts, killer toxins and killer viruses are also becoming increasingly interesting with respect to possible applications in biomedicine and gene technology. This review will try to address all these aspects.

摘要

自从大约40年前首次发现酵母杀伤系统以来,深入的研究极大地增强了我们在生物学许多领域的知识,并为真核细胞生物学的基本方面以及病毒-宿主细胞相互作用和一般酵母病毒学提供了更深入的见解。对杀伤毒素结构、合成和分泌的分析促进了对诸如分泌途径中翻译后前体蛋白加工等基本细胞机制的理解。此外,对毒素作用的受体介导模式的研究被证明是剖析酵母和真菌细胞壁分子结构和体内组装的有效手段,为对抗人类致病性酵母感染提供了重要见解。除了在理解真核细胞生物学方面的普遍重要性外,杀伤酵母、杀伤毒素和杀伤病毒在生物医学和基因技术的可能应用方面也越来越受到关注。本综述将试图探讨所有这些方面。

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