Campylobacter jejuni transducer like proteins: Chemotaxis and beyond
Loading...
Date
Journal Title
Journal ISSN
Volume Title
Publisher
Taylor and Francis Inc.
Abstract
Chemotaxis, a process that mediates directional motility toward or away from chemical stimuli (chemoeffectors/ligands that can be attractants or repellents) in the environment, plays an important role in the adaptation of Campylobacter jejuni to disparate niches. The chemotaxis system consists of core signal transduction proteins and methyl-accepting-domain-containing Transducer like proteins (Tlps). Ligands binding to Tlps relay a signal to chemotaxis proteins in the cytoplasm which initiate a signal transduction cascade, culminating into a directional flagellar movement. Tlps facilitate substrate-specific chemotaxis in C. jejuni, which plays an important role in the pathogen's adaptation, pathobiology and colonization of the chicken gastrointestinal tract. However, the role of Tlps in C. jejuni's host tissue specific colonization, physiology and virulence remains not completely understood. Based on recent studies, it can be predicted that Tlps might be important targets for developing strategies to control C. jejuni via vaccines and antimicrobials. © 2017 Taylor & Francis.
Description
Keywords
Adaptation, Amino acids, Biofilm, Chemotaxis, Chicken, Colonization, Methyl accepting chemoreceptors, Motility, Organic acids, Tlps, Virulence, Animals, Bacterial proteins, Campylobacter infections, Campylobacter jejuni, Chickens, Gastrointestinal tract, Chemorepellent, Cholera toxin, Hydroxyl radical, Membrane protein, Metalloprotein, Phosphate, Transducer like protein, Transducer like protein 1, Transducer like protein 10, Transducer like protein 2, Transducer like protein 3, Transducer like protein 4, Transducer like protein 6, Transducer like protein 7, Unclassified drug, Bacterial protein, Bacterial colonization, Bacterial transmission, Cytoplasm, Flagellum, Intestine adaptation, Ligand binding, Nonhuman, Protein expression, Review, Signal transduction, Animal, Campylobacteriosis, Genetics, Metabolism, Microbiology, Physiology, Veterinary