Institut Pasteur, Département Génomes et Génétique, Unité Plasticité du Génome Bactérien, Paris, France; CNRS, UMR3525, Paris, France.
FEMS Microbiol Rev. 2014 Nov;38(6):1126-45. doi: 10.1111/1574-6976.12077. Epub 2014 Jun 30.
The presence of an abnormal amount of single-stranded DNA in the bacterial cell constitutes a genotoxic alarm signal that induces the SOS response, a broad regulatory network found in most bacterial species to address DNA damage. The aim of this review was to point out that beyond being a repair process, SOS induction leads to a very strong but transient response to genotoxic stress, during which bacteria can rearrange and mutate their genome, induce several phenotypic changes through differential regulation of genes, and sometimes acquire characteristics that potentiate bacterial survival and adaptation to changing environments. We review here the causes and consequences of SOS induction, but also how this response can be modulated under various circumstances and how it is connected to the network of other important stress responses. In the first section, we review articles describing the induction of the SOS response at the molecular level. The second section discusses consequences of this induction in terms of DNA repair, changes in the genome and gene expression, and sharing of genomic information, with their effects on the bacteria's life and evolution. The third section is about the fine tuning of this response to fit with the bacteria's 'needs'. Finally, we discuss recent findings linking the SOS response to other stress responses. Under these perspectives, SOS can be perceived as a powerful bacterial strategy against aggressions.
细菌细胞中存在异常数量的单链 DNA 会构成一种遗传毒性警报信号,诱导 SOS 反应,这是一种在大多数细菌物种中发现的广泛调节网络,用于应对 DNA 损伤。本综述旨在指出,SOS 诱导不仅仅是一个修复过程,它还会引发对遗传毒性应激的非常强烈但短暂的反应,在此期间,细菌可以重新排列和突变其基因组,通过基因的差异调节诱导几种表型变化,有时还会获得增强细菌生存和适应不断变化的环境的特性。我们在这里回顾了 SOS 诱导的原因和后果,以及如何在各种情况下调节这种反应,以及它如何与其他重要应激反应的网络相关联。在第一部分中,我们回顾了描述分子水平上 SOS 反应诱导的文章。第二部分讨论了这种诱导在 DNA 修复、基因组和基因表达变化以及基因组信息共享方面的后果,以及它们对细菌生命和进化的影响。第三部分是关于对这种反应进行微调以适应细菌的“需求”。最后,我们讨论了将 SOS 反应与其他应激反应联系起来的最新发现。从这些角度来看,SOS 可以被视为细菌对抗侵害的强大策略。