Martis B Shiny, Forquet Raphaël, Reverchon Sylvie, Nasser William, Meyer Sam
Université de Lyon, INSA Lyon, Université Claude Bernard Lyon 1, CNRS UMR5240, Laboratoire de Microbiologie, Adaptation et Pathogénie, 11 avenue Jean Capelle, 69621 Villeurbanne, France.
Comput Struct Biotechnol J. 2019 Jul 26;17:1047-1055. doi: 10.1016/j.csbj.2019.07.013. eCollection 2019.
DNA supercoiling acts as a global and ancestral regulator of bacterial gene expression. In this review, we advocate that it plays a pivotal role in host-pathogen interactions by transducing environmental signals to the bacterial chromosome and coordinating its transcriptional response. We present available evidence that DNA supercoiling is modulated by environmental stress conditions relevant to the infection process according to ancestral mechanisms, in zoopathogens as well as phytopathogens. We review the results of transcriptomics studies obtained in widely distant bacterial species, showing that such structural transitions of the chromosome are associated to a complex transcriptional response affecting a large fraction of the genome. Mechanisms and computational models of the transcriptional regulation by DNA supercoiling are then discussed, involving both basal interactions of RNA Polymerase with promoter DNA, and more specific interactions with regulatory proteins. A final part is specifically focused on the regulation of virulence genes within pathogenicity islands of several pathogenic bacterial species.
DNA超螺旋作为细菌基因表达的一种全局且古老的调节因子。在本综述中,我们主张它通过将环境信号传递至细菌染色体并协调其转录反应,在宿主 - 病原体相互作用中发挥关键作用。我们展示了现有证据,表明在动物病原体和植物病原体中,根据古老机制,DNA超螺旋受与感染过程相关的环境应激条件调节。我们回顾了在亲缘关系甚远的细菌物种中获得的转录组学研究结果,表明染色体的这种结构转变与影响基因组很大一部分的复杂转录反应相关。接着讨论了DNA超螺旋转录调控的机制和计算模型,这涉及RNA聚合酶与启动子DNA的基础相互作用以及与调节蛋白的更特异性相互作用。最后一部分特别聚焦于几种致病细菌物种致病岛中毒力基因的调控。