Dupré Elian, Clantin Bernard, Yuan Youhua, Lecher Sophie, Lesne Elodie, Antoine Rudy, Villeret Vincent, Jacob-Dubuisson Françoise
Univ. Lille, CNRS, Inserm, CHU Lille, Institut Pasteur de Lille, U1019-UMR 9017 - CIIL- Center for Infection and Immunity of Lille, F-59000 Lille, France.
U1167 - RID-AGE Univ. Lille, Inserm, CHU Lille, Institut Pasteur de Lille - CNRS ERL 9002 - Integrative Structural Biology - BP 70478 - F-59658 Villeneuve d'Ascq Cedex - France.
J Bacteriol. 2021 May 1;203(9). doi: 10.1128/JB.00614-20. Epub 2021 Feb 22.
The two-component system BvgAS controls the virulence regulon in BvgS is the prototype of a family of sensor histidine-kinases harboring periplasmic Venus flytrap (VFT) domains. The VFT domains are connected to the cytoplasmic kinase moiety by helical linkers separated by a Per-ARNT-Sim (PAS) domain. Antagonism between the two linkers, as one forms a coiled coil when the other is dynamic and vice versa, regulates BvgS activity. Here we solved the structure of the intervening PAS domain by X-ray crystallography. Two forms were obtained that notably differ by the connections between the PAS core domain and the flanking helical linkers. Structure-guided mutagenesis indicated that those connections participate in the regulation of BvgS activity. The PAS domain thus appears to function as a switch-facilitator module whose conformation determines the output of the system. As many BvgS homologs have similar architectures, the mechanisms unveiled here are likely to generally apply to the regulation of sensor-histidine kinases of that family.The whooping cough agent colonizes the human respiratory tract using virulence factors co-regulated by the sensory transduction system BvgAS. BvgS is a model for a family of sensor-kinase proteins, some of which are found in important bacterial pathogens. BvgS functions as a kinase or a phosphatase depending on external signals, which determines if is virulent or avirulent. Deciphering its mode of action might thus lead to new ways of fighting infections. Here we used X-ray crystallography to solve the three-dimensional structure of the domain that precedes the enzymatic moiety and identified features that regulate BvgS activity. As many sensor-kinases of the BvgS family harbor homologous domains, the mechanism unveiled here might be of general relevance.
双组分系统BvgAS控制百日咳博德特氏菌中的毒力调节子。BvgS是一类含有周质捕蝇草(VFT)结构域的传感器组氨酸激酶家族的原型。VFT结构域通过由Per-ARNT-Sim(PAS)结构域隔开的螺旋接头连接到细胞质激酶部分。两个接头之间存在拮抗作用,当一个形成卷曲螺旋时另一个是动态的,反之亦然,这种拮抗作用调节BvgS活性。在这里,我们通过X射线晶体学解析了中间PAS结构域的结构。获得了两种形式,它们在PAS核心结构域与侧翼螺旋接头之间的连接上有显著差异。结构导向诱变表明这些连接参与BvgS活性的调节。因此,PAS结构域似乎起到开关促进模块的作用,其构象决定了系统的输出。由于许多BvgS同源物具有相似的结构,这里揭示的机制可能普遍适用于该家族传感器组氨酸激酶的调节。百日咳病原体利用由传感转导系统BvgAS共同调节的毒力因子在人类呼吸道定殖。BvgS是一类传感器激酶蛋白家族的模型,其中一些存在于重要的细菌病原体中。BvgS根据外部信号作为激酶或磷酸酶发挥作用,这决定了百日咳博德特氏菌是有毒还是无毒。因此,破译其作用模式可能会带来对抗感染的新方法。在这里,我们使用X射线晶体学解析了酶部分之前结构域的三维结构,并确定了调节BvgS活性的特征。由于BvgS家族的许多传感器激酶含有同源结构域,这里揭示的机制可能具有普遍相关性。