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基于II型DNA拓扑异构酶基因的细菌多样性

Bacterial diversity based on type II DNA topoisomerase genes.

作者信息

Huang W M

机构信息

Department of Oncological Sciences, University of Utah Medical Center, Salt Lake City 84132, USA.

出版信息

Annu Rev Genet. 1996;30:79-107. doi: 10.1146/annurev.genet.30.1.79.

Abstract

Type II DNA topoisomerases are essential and ubiquitous DNA metabolic enzymes that alter DNA topology. Eubacteria have two indispensable type II DNA topoisomerases, DNA gyrase encoded by gyrB and gyrA and topoisomerase IV encoded by parE and parC. These genes belong to a single family whose members span both eukaryotes and prokaryotes. The highly conserved motifs in these genes provide a rationale for the design of universal primers used in the polymerase chain reaction in order to systematically generate a data set suitable for bacterial diversity studies at the macro-diversity level, as well as at the micro-diversity level displaying individual species and isolates. This family of genes is the subject of intensive biochemical and genetic analyses, which provide an opportunity for comprehensive understanding of sequence conservation and variability and their relationship to function. These genes are ideally suited for microbial identification and biodiversity analyses.

摘要

II型DNA拓扑异构酶是改变DNA拓扑结构的必需且普遍存在的DNA代谢酶。真细菌有两种不可或缺的II型DNA拓扑异构酶,由gyrB和gyrA编码的DNA促旋酶以及由parE和parC编码的拓扑异构酶IV。这些基因属于一个单一的家族,其成员涵盖真核生物和原核生物。这些基因中高度保守的基序为聚合酶链反应中通用引物的设计提供了理论依据,以便系统地生成适用于宏观多样性水平以及显示单个物种和分离株的微观多样性水平的细菌多样性研究的数据集。这个基因家族是深入的生化和遗传分析的对象,这些分析为全面理解序列保守性和变异性及其与功能的关系提供了机会。这些基因非常适合用于微生物鉴定和生物多样性分析。

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