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一种替代 σ 因子调控灰色链霉菌中的主要 σ 因子。

An alternative sigma factor governs the principal sigma factor in Streptomyces griseus.

机构信息

Department of Biotechnology, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo, 113-8657, Japan.

出版信息

Mol Microbiol. 2013 Mar;87(6):1223-36. doi: 10.1111/mmi.12160. Epub 2013 Feb 21.

DOI:10.1111/mmi.12160
PMID:23347076
Abstract

In bacteria, the RNA polymerase holoenzyme comprises a five-subunit core enzyme and a dissociable subunit, sigma factor, which is responsible for transcriptional initiation. The filamentous bacterium Streptomyces griseus has 52 sigma factors, including one essential 'principal' sigma factor (σ(HrdB) ) that is responsible for the transcription of housekeeping genes. Here we characterized an alternative sigma factor (σ(ShbA) ), which is highly conserved within the genus Streptomyces. A σ(ShbA) -deficient mutant showed a severe growth defect and transcriptome analysis indicated that many housekeeping genes were downregulated in response to insufficient σ(ShbA) production. Biochemical and genetic analyses proved that σ(ShbA) is a major determinant of transcription of the σ(HrdB) gene. This observation of a principal sigma factor being governed by another sigma factor throughout growth is unprecedented. We found that increasing σ(ShbA) production with mycelial growth maintained a high σ(HrdB) level late in growth. Furthermore, a hrdB-autoregulatable σ(ShbA) -deficient mutant, in which the principal sigma factor gene can be transcribed by RNA polymerase containing σ(HrdB) itself, showed several defects: rapid mycelial lysis in stationary phase in liquid culture and delayed morphological development and impaired streptomycin production in solid culture. From these observations, we discuss the biological significance of control of σ(HrdB) by σ(ShbA) in S. griseus.

摘要

在细菌中,RNA 聚合酶全酶由一个五亚基核心酶和一个可分离的亚基(σ 因子)组成,σ 因子负责转录起始。丝状细菌灰色链霉菌有 52 个σ因子,包括一个负责管家基因转录的必需“主要”σ 因子(σ(HrdB))。在这里,我们对一个替代的σ因子(σ(ShbA))进行了表征,该因子在链霉菌属内高度保守。一个σ(ShbA)缺陷突变体表现出严重的生长缺陷,转录组分析表明,许多管家基因的表达因 σ(ShbA)产生不足而下调。生化和遗传分析证明,σ(ShbA)是 σ(HrdB)基因转录的主要决定因素。这种主要σ因子被另一个σ因子在整个生长过程中调控的现象是前所未有的。我们发现,随着菌丝体生长增加 σ(ShbA)的产生,可以维持生长后期高 σ(HrdB)水平。此外,一个 hrdB 可自我调控的 σ(ShbA)缺陷突变体,其中主要σ因子基因可以由含有 σ(HrdB)自身的 RNA 聚合酶转录,表现出几种缺陷:在液体培养的静止期快速菌丝体裂解,以及在固体培养中形态发育延迟和链霉素产生受损。从这些观察结果中,我们讨论了 σ(ShbA)对 S. griseus 中 σ(HrdB)的控制的生物学意义。

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