Institut Pasteur de Lille, Center for Infection and Immunity of Lille, Lille, France.
Univ. Lille, Lille, France.
Sci Rep. 2016 Sep 13;6:32774. doi: 10.1038/srep32774.
The whooping cough agent Bordetella pertussis regulates the production of its virulence factors by the BvgA/S system. Phosphorylated BvgA activates the virulence-activated genes (vags) and represses the expression of the virulence-repressed genes (vrgs) via the activation of the bvgR gene. In modulating conditions, with MgSO4, the BvgA/S system is inactive, and the vrgs are expressed. Here, we show that the expression of almost all vrgs depends on RisA, another transcriptional regulator. We also show that some vags are surprisingly no longer modulated by MgSO4 in the risA(-) background. RisA also regulates the expression of other genes, including chemotaxis and flagellar operons, iron-regulated genes, and genes of unknown function, which may or may not be controlled by BvgA/S. We identified RisK as the likely cognate RisA kinase and found that it is important for expression of most, but not all RisA-regulated genes. This was confirmed using the phosphoablative RisAD(60)N and the phosphomimetic RisAD(60)E analogues. Thus the RisA regulon adds a new layer of complexity to B. pertussis virulence gene regulation.
百日咳杆菌通过 BvgA/S 系统调节其毒力因子的产生。磷酸化的 BvgA 通过激活 bvgR 基因来激活毒力激活基因(vags)并抑制毒力抑制基因(vrgs)的表达。在调节条件下,使用 MgSO4 时,BvgA/S 系统失活,vrgs 表达。在这里,我们表明几乎所有的 vrgs 的表达都依赖于另一个转录调节因子 RisA。我们还表明,在 risA(-)背景下,一些 vags 不再被 MgSO4 调节。RisA 还调节其他基因的表达,包括趋化性和鞭毛操纵子、铁调节基因和未知功能的基因,这些基因可能受或不受 BvgA/S 控制。我们确定了 RisK 是 RisA 激酶的可能同源物,并且发现它对于大多数但不是所有 RisA 调节基因的表达都是重要的。这通过使用磷酸化失活的 RisAD(60)N 和磷酸模拟的 RisAD(60)E 类似物得到了证实。因此,RisA 调节子为百日咳杆菌毒力基因调节增加了一个新的复杂性层次。