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枯草芽孢杆菌对数生长期期间kinC/D介导的spo0A异质性表达导致了对φ29噬菌体发育的部分抑制。

kinC/D-mediated heterogeneous expression of spo0A during logarithmical growth in Bacillus subtilis is responsible for partial suppression of phi 29 development.

作者信息

Castilla-Llorente Virginia, Salas Margarita, Meijer Wilfried J J

机构信息

Instituto de Biología Molecular Eladio Viñuela (CSIC), Centro de Biología Molecular Severo Ochoa (CSIC-UAM), C. Nicolás Cabrera 1, Universidad Autónoma, Canto Blanco, 28049 Madrid, Spain.

出版信息

Mol Microbiol. 2008 Jun;68(6):1406-17. doi: 10.1111/j.1365-2958.2008.06234.x. Epub 2008 Apr 8.

Abstract

The host of the lytic bacteriophage phi 29 is the spore-forming bacterium Bacillus subtilis. When infection occurs during early stages of sporulation, however, phi 29 development is suppressed and the infecting phage genome becomes trapped into the developing spore. Recently, we have shown that Spo0A, the key transcriptional regulator for entry into sporulation, is directly responsible for suppression of the lytic phi 29 cycle in cells having initiated sporulation. Surprisingly, we found that phi 29 development is suppressed in a subpopulation of logarithmically growing culture and that spo0A is heterogeneously expressed during this growth stage. Furthermore, we showed that kinC and, to a minor extent, kinD, are responsible for heterogeneous expression levels of spo0A during logarithmical growth that are below the threshold to activate sporulation, but sufficient for suppression of the lytic cycle of phi 29. Whereas spo0A was known to be heterogeneously expressed during the early stages of sporulation, our findings show that this also occurs during logarithmical growth. These insights are likely to have important consequences, not only for the life cycle of phi 29, but also for B. subtilis developmental processes.

摘要

裂解性噬菌体phi 29的宿主是形成芽孢的细菌枯草芽孢杆菌。然而,当在芽孢形成的早期阶段发生感染时,phi 29的发育会受到抑制,感染的噬菌体基因组会被困在发育中的芽孢中。最近,我们发现Spo0A是进入芽孢形成的关键转录调节因子,它直接负责抑制已开始芽孢形成的细胞中的裂解性phi 29周期。令人惊讶的是,我们发现phi 29的发育在对数生长期的一个亚群中受到抑制,并且spo0A在这个生长阶段是异质表达的。此外,我们表明kinC以及在较小程度上的kinD,是对数生长期间spo0A异质表达水平的原因,这些水平低于激活芽孢形成的阈值,但足以抑制phi 29的裂解周期。虽然已知spo0A在芽孢形成的早期阶段是异质表达的,但我们的研究结果表明,这在对数生长期也会发生。这些见解不仅可能对phi 29的生命周期,而且对枯草芽孢杆菌的发育过程产生重要影响。

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