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comQ、comP、srfA、spo0H、spo0A和abrB基因中的插入突变对枯草芽孢杆菌中杆菌溶素生物合成的影响。

The effects of insertional mutations in comQ, comP, srfA, spo0H, spo0A and abrB genes on bacilysin biosynthesis in Bacillus subtilis.

作者信息

Karataş Ayten Yazgan, Cetin Seçil, Ozcengiz Gülay

机构信息

Molecular Biology and Genetics Department, Istanbul Technical University, 80626, Istanbul, Turkey.

出版信息

Biochim Biophys Acta. 2003 Apr 15;1626(1-3):51-6.

Abstract

In Bacillus subtilis, two extracellular signaling peptides, ComX pheromone and CSF (competence and sporulation factor), stimulate the development of genetic competence and surfaction biosynthesis in response to high cell density (quorum sensing) by regulating the activity of transcription factor ComA. We recently showed that biosynthesis of dipeptide antibiotic bacilysin is linked to ComA and PhrC(CSF) in a Spo0K(Opp)-dependent manner by constructing phrC-, comA- and oppA-disrupted mutants of B. subtilis. In the present study, another pathway of quorum-sensing global regulation, namely, ComQ/ComX was found to be essential for bacilysin biosynthesis. ComP function in this chain was dispensable, most probably because of the existence of an alternative mean of ComA activation. The disruption of srfA operon in the bacilysin producer resulted with the bacilysin-negative phenotype; thus, our study verified that the srfA operon functions directly in the production of bacilysin. The abrB mutation suppressed the bacilysin-negative phenotype of a spo0A mutant, whereas the same mutation in the wild-type strain resulted in a significant increase in the production of bacilysin. This indicated that abrB gene product negatively controls the transcription of the gene(s) involved in bacilysin formation.

摘要

在枯草芽孢杆菌中,两种细胞外信号肽,即ComX信息素和CSF(感受态和芽孢形成因子),通过调节转录因子ComA的活性,响应高细胞密度(群体感应)刺激遗传感受态的发展和表面活性物质的生物合成。我们最近通过构建枯草芽孢杆菌的phrC、comA和oppA缺失突变体表明,二肽抗生素杆菌溶素的生物合成以依赖Spo0K(Opp)的方式与ComA和PhrC(CSF)相关联。在本研究中,发现群体感应全局调控的另一条途径,即ComQ/ComX,对杆菌溶素的生物合成至关重要。ComP在这条链中的功能是可有可无的,很可能是因为存在ComA激活的替代方式。杆菌溶素产生菌中srfA操纵子的缺失导致杆菌溶素阴性表型;因此,我们的研究证实srfA操纵子直接参与杆菌溶素的产生。abrB突变抑制了spo0A突变体的杆菌溶素阴性表型,而野生型菌株中的相同突变导致杆菌溶素产量显著增加。这表明abrB基因产物负向控制参与杆菌溶素形成的基因的转录。

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