Greer-Phillips Suzanne E, Sukomon Nattakan, Chua Teck Khiang, Johnson Mark S, Crane Brian R, Watts Kylie J
Division of Microbiology and Molecular Genetics, Loma Linda University, Loma Linda, CA, 92350, USA.
Department of Chemistry and Chemical Biology, Cornell University, Ithaca, NY, 14850, USA.
Mol Microbiol. 2018 Jul;109(2):209-224. doi: 10.1111/mmi.13978.
The diarrheal pathogen Vibrio cholerae navigates complex environments using three chemosensory systems and 44-45 chemoreceptors. Chemosensory cluster II modulates chemotaxis, whereas clusters I and III have unknown functions. Ligands have been identified for only five V. cholerae chemoreceptors. Here, we report that the cluster III receptor, VcAer2, binds and responds to O . VcAer2 is an ortholog of Pseudomonas aeruginosa Aer2 (PaAer2) but differs in that VcAer2 has two, rather than one, N-terminal PAS domain. We have determined that both PAS1 and PAS2 form homodimers and bind penta-coordinate b-type heme via an Eη-His residue. Heme binding to PAS1 required the entire PAS core, but receptor function also required the N-terminal cap. PAS2 functioned as an O -sensor [ , 19 μM], utilizing the same Iβ Trp (W276) as PaAer2 to stabilize O . The crystal structure of PAS2-W276L was similar to that of PaAer2-PAS but resided in an active conformation mimicking the ligand-bound state, consistent with its signal-on phenotype. PAS1 also bound O [ , 12 μM], although O binding was stabilized by either a Trp residue or Tyr residue. Moreover, PAS1 appeared to function as a signal modulator, regulating O -mediated signaling from PAS2 and resulting in activation of the cluster III chemosensory pathway.
腹泻病原体霍乱弧菌利用三种化学感应系统和44 - 45种化学感受器在复杂环境中导航。化学感应簇II调节趋化作用,而簇I和簇III的功能未知。仅为五种霍乱弧菌化学感受器鉴定出了配体。在此,我们报告簇III受体VcAer2结合并对O作出反应。VcAer2是铜绿假单胞菌Aer2(PaAer2)的直系同源物,但不同之处在于VcAer2有两个而非一个N端PAS结构域。我们已确定PAS1和PAS2均形成同二聚体,并通过一个Eη - His残基结合五配位b型血红素。血红素与PAS1的结合需要整个PAS核心,但受体功能还需要N端帽。PAS2作为O传感器[ ,19 μM]发挥作用,利用与PaAer2相同的Iβ色氨酸(W276)来稳定O。PAS2 - W276L的晶体结构与PaAer2 - PAS的晶体结构相似,但处于模拟配体结合状态的活性构象,与其信号开启表型一致。PAS1也结合O[ ,12 μM],尽管O的结合通过一个色氨酸残基或酪氨酸残基得以稳定。此外,PAS1似乎作为信号调节剂发挥作用,调节来自PAS2的O介导的信号传导,并导致簇III化学感应途径的激活。