首页> 外文期刊>DNA and Cell Biology >The extracytoplasmic function sigma factor SigY is important for efficient maintenance of the Sp beta prophage that encodes sublancin in Bacillus subtilis. (Special Issue: Special focus on undergraduate research.)
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The extracytoplasmic function sigma factor SigY is important for efficient maintenance of the Sp beta prophage that encodes sublancin in Bacillus subtilis. (Special Issue: Special focus on undergraduate research.)

机译:胞外功能sigma因子SigY对于有效维持在枯草芽孢杆菌中编码sublancin的Sp beta噬菌体很重要。 (特刊:特别关注本科生研究。)

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摘要

Many strains of the soil bacterium Bacillus subtilis are capable of producing and being resistant to the antibiotic sublancin because they harbor the Sp beta prophage. This 135 kb viral genome is integrated into the circular DNA chromosome of B. subtilis, and contains genes for the production of and resistance to sublancin. We investigated the role of SigY in sublancin production and resistance, finding that it is important for efficient maintenance of the Sp beta prophage. We were unable to detect the prophage in mutants lacking SigY. Additionally, these mutants were no longer able to produce sublancin, were sensitive to killing by this factor, and displayed a delay in sporulation. Wild-type cells with normal SigY activity were found to partially lose the Sp beta prophage during growth and early sporulation, suggesting a mechanism for the bistable outcome of sibling cells capable of killing and of being killed. The appropriate regulation of SigY appears to be essential for growth as evidenced by the inability to disrupt the gene for its putative antisigma. Our results confirm a role for SigY in antibiotic production and resistance, as has been found for other members of the extracytoplasmic function sigma factor family in B. subtilis, and shows that this role is achieved by affecting maintenance of the Sp beta prophage.
机译:许多土壤细菌枯草芽孢杆菌菌株能够产生并抵抗抗生素sublancin,因为它们带有Sp beta噬菌体。该135kb病毒基因组被整合到B的环状DNA染色体中。枯草芽孢杆菌,并包含产生和抵抗sublancin的基因我们调查了SigY在亚lancin产生和抵抗中的作用,发现它对于有效维持Sp beta噬菌体很重要。我们无法检测到缺少SigY的突变体中的噬菌体。另外,这些突变体不再能够产生sublancin,对这种因子的杀伤敏感,并显示出孢子形成的延迟。发现具有正常SigY活性的野生型细胞在生长和早期孢子形成过程中会部分丧失Sp beta噬菌体,这提示了能够杀死并被杀死的同胞的双稳态结果的机制。 SigY的适当调节似乎对生长至关重要,这一点由无法破坏其推定的抗西格玛基因来证明。我们的结果证实了SigY在抗生素产生和耐药中的作用,正如在B中发现的胞外功能sigma因子家族的其他成员一样。枯草,并表明该作用是通过影响Spβ的前言维护而实现的。

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