10 research outputs found

    We're in this Together: Sensation of the Host Cell Environment by Endosymbiotic Bacteria

    Get PDF
    Bacteria inhabit diverse environments, including the inside of eukaryotic cells. While a bacterial invader may initially act as a parasite or pathogen, a subsequent mutualistic relationship can emerge in which the endosymbiotic bacteria and their host share metabolites. While the environment of the host cell provides improved stability when compared to an extracellular environment, the endosymbiont population must still cope with changing conditions, including variable nutrient concentrations, the host cell cycle, host developmental programs, and host genetic variation. Furthermore, the eukaryotic host can deploy mechanisms actively preventing a bacterial return to a pathogenic state. Many endosymbionts are likely to use two-component systems (TCSs) to sense their surroundings, and expanded genomic studies of endosymbionts should reveal how TCSs may promote bacterial integration with a host cell. We suggest that studying TCS maintenance or loss may be informative about the evolutionary pathway taken toward endosymbiosis, or even toward endosymbiont-to-organelle conversion.Peer reviewe

    Methionine Biosynthesis in Escherichia coli and Corynebacterium glutamicum

    No full text

    Novel roles for two-component regulatory systems in cytotoxicity and virulence-related <em>properties in Pseudomonas aeruginosa</em>

    No full text

    Pathophysiologic Significance

    No full text
    corecore