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霍乱弧菌的Aer2受体是一种双PAS-血红素氧传感器。

The Aer2 receptor from Vibrio cholerae is a dual PAS-heme oxygen sensor.

作者信息

Greer-Phillips Suzanne E, Sukomon Nattakan, Chua Teck Khiang, Johnson Mark S, Crane Brian R, Watts Kylie J

机构信息

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.

出版信息

Mol Microbiol. 2018 Jul;109(2):209-224. doi: 10.1111/mmi.13978.

Abstract

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.

摘要

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。

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