4.7 Article

Cys-Scanning Disulfide Cross linking and Bayesian Modeling Probe the Transmembrane Signaling Mechanism of the Histidine Kinase, PhoQ

Journal

STRUCTURE
Volume 22, Issue 9, Pages 1239-1251

Publisher

CELL PRESS
DOI: 10.1016/j.str.2014.04.019

Keywords

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Funding

  1. NIH [GM54616, AI074866, NIGMS U54 RR022220, R01 GM083960, U54 GM074929]
  2. MRSEC program of NSF [DMR-1120901]
  3. Swiss National Science Foundation [PA00P3-139727, PBZHP3-133388]
  4. Swiss National Science Foundation (SNF) [PBZHP3-133388, PA00P3_139727] Funding Source: Swiss National Science Foundation (SNF)

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Bacteria transduce signals across the membrane using two-component systems (TCSs), consisting of a membrane-spanning sensor histidine kinase and a cytoplasmic response regulator. In gram-negative bacteria, the PhoPQ TCS senses cations and antimicrobial peptides, yet little is known about the structural changes involved in transmembrane signaling. We construct a model of PhoQ signal transduction using Bayesian inference, based on disulfide cross-linking data and homologous crystal structures. The data are incompatible with a single conformation but are instead consistent with two interconverting structures. These states differ in membrane depth of the periplasmic acidic patch and the reciprocal displacement of diagonal helices along the dimer interface. Studies of multiple histidine kinases suggest this repacking might be a common mode of signal transduction in sensor His-kinase receptors. Because a similar scissors model has been ruled out in CheA-linked chemoreceptors, the evidence suggests that sensor His-kinase and CheA-linked receptors possess different signaling mechanisms.

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