Flagellar Perturbations Activate Adhesion through Two Distinct Pathways in Caulobacter crescentus
David M. Hershey, Aretha Fiebig, Sean Crosson
Abstract
David M. Hershey, Aretha Fiebig, Sean Crosson
Abstract
morphogenic program and those that are required for flagellar motility. Our results support a model in which a developmental and a mechanical signaling pathway operate in parallel downstream of the flagellum and converge to regulate adhesion. We conclude that the flagellum serves as a signaling hub by integrating internal and external cues to coordinate surface colonization and emphasize the role of signal integration in linking complex sets of environmental stimuli to individual behaviors.
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morphogenic program and those that are required for flagellar motility. Our results support a model in which a developmental and a mechanical signaling pathway operate in parallel downstream of the flagellum and converge to regulate adhesion. We conclude that the flagellum serves as a signaling hub by integrating internal and external cues to coordinate surface colonization and emphasize the role of signal integration in linking complex sets of environmental stimuli to individual behaviors.
Key concepts: Caulobacter crescentus, Flagellum, Cell biology, Adhesion, Biology, Chemistry, Bacterial protein, Bacteria