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枯草芽孢杆菌K态中ComGA与RelA的相互作用及持续性

ComGA-RelA interaction and persistence in the Bacillus subtilis K-state.

作者信息

Hahn Jeanette, Tanner Andrew W, Carabetta Valerie J, Cristea Ileana M, Dubnau David

机构信息

Public Health Research Institute Center of New Jersey Medical School, Rutgers University, 225 Warren Street, Newark, NJ, 07103, USA.

Department of Molecular Biology, Princeton University, Princeton, NJ, 08544, USA.

出版信息

Mol Microbiol. 2015 Aug;97(3):454-71. doi: 10.1111/mmi.13040. Epub 2015 May 15.

Abstract

The bistably expressed K-state of Bacillus subtilis is characterized by two distinct features; transformability and arrested growth when K-state cells are exposed to fresh medium. The arrest is manifested by a failure to assemble replisomes and by decreased rates of cell growth and rRNA synthesis. These phenotypes are all partially explained by the presence of the AAA(+) protein ComGA, which is also required for the binding of transforming DNA to the cell surface and for the assembly of the transformation pilus that mediates DNA transport. We have discovered that ComGA interacts with RelA and that the ComGA-dependent inhibition of rRNA synthesis is largely bypassed in strains that cannot synthesize the alarmone (p)ppGpp. We propose that the interaction of ComGA with RelA prevents the hydrolysis of (p)ppGpp in K-state cells, which are thus trapped in a non-growing state until ComGA is degraded. We show that some K-state cells exhibit tolerance to antibiotics, a form of type 1 persistence, and we propose that the bistable expression of both transformability and the growth arrest are bet-hedging adaptations that improve fitness in the face of varying environments, such as those presumably encountered by B. subtilis in the soil.

摘要

枯草芽孢杆菌的双稳态表达K态具有两个明显特征:可转化性以及当K态细胞接触新鲜培养基时生长停滞。这种停滞表现为复制体组装失败以及细胞生长速率和rRNA合成速率降低。这些表型都部分归因于AAA(+)蛋白ComGA的存在,ComGA对于转化DNA与细胞表面的结合以及介导DNA转运的转化菌毛的组装也是必需的。我们发现ComGA与RelA相互作用,并且在无法合成警报素(p)ppGpp的菌株中,ComGA依赖性的rRNA合成抑制在很大程度上被绕过。我们提出,ComGA与RelA的相互作用会阻止K态细胞中(p)ppGpp的水解,因此这些细胞会被困在非生长状态,直到ComGA被降解。我们表明,一些K态细胞表现出对抗生素的耐受性,这是一种1型持续性,并且我们提出可转化性和生长停滞的双稳态表达是一种适应性策略,可在面对不同环境(例如枯草芽孢杆菌在土壤中可能遇到的环境)时提高适应性。

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