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对31个全序列测定的真细菌基因组中编码RNA聚合酶σ因子的基因进行的盘点。

An inventory of genes encoding RNA polymerase sigma factors in 31 completely sequenced eubacterial genomes.

作者信息

Mittenhuber Gerhard

机构信息

Institut für Mikrobiologie und Molekularbiologie, Ernst- Moritz-Arndt-Universität, Greifswald, Germany.

出版信息

J Mol Microbiol Biotechnol. 2002 Jan;4(1):77-91.

Abstract

Sigma factors are important elements involved in transcriptional regulation of gene expression by conferring promoter specificity to RNA polymerase. The number of sigma factor encoding genes in 31 completely sequenced bacterial genomes were compared. Two unrelated families of sigma factors, the sigma70- and the sigma54-family were identified previously. The sigma70-family can be further subdivided into two distantly related groups: the sigma70 subfamily and the poorly characterized ECF subfamily. A total of 215 sigma factors could be attributed to these subfamilies. The construction of phylogenetic trees allows subclassifications of sigma factor encoding genes within the subfamilies. With the exception of Deinococcus radiodurans, all species possess a housekeeping primary sigma factor. Free-living species possess a higher number of both sigma70-type and ECF alternative sigma factors than pathogens or symbionts associated with animals. Different bacterial species exhibit large differences in the number of alternative sigma factor encoding genes and consequently huge flexibility in their transcriptional regulatory patterns. Transcriptional regulation in terms of regulons controlled by alternative sigma factors is a late evolving phenomenon. The current nomenclature for sigma factor encoding genes is confusing and should be revised.

摘要

σ因子是通过赋予RNA聚合酶启动子特异性来参与基因表达转录调控的重要元件。对31个完全测序的细菌基因组中编码σ因子的基因数量进行了比较。先前已鉴定出两个不相关的σ因子家族,即σ70家族和σ54家族。σ70家族可进一步细分为两个远缘相关的组:σ70亚家族和特征不明确的ECF亚家族。共有215个σ因子可归属于这些亚家族。系统发育树的构建允许在亚家族内对编码σ因子的基因进行亚分类。除耐辐射球菌外,所有物种都拥有一个管家主要σ因子。自由生活的物种比与动物相关的病原体或共生体拥有更多数量的σ70型和ECF替代σ因子。不同细菌物种在编码替代σ因子的基因数量上表现出很大差异,因此其转录调控模式具有巨大的灵活性。就由替代σ因子控制的调控子而言,转录调控是一种较晚出现的现象。目前编码σ因子的基因命名法令人困惑,应该进行修订。

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