48 research outputs found

    FrzS Regulates Social Motility in Myxococcus xanthus by Controlling Exopolysaccharide Production

    Get PDF
    Myxococcus xanthus Social (S) motility occurs at high cell densities and is powered by the extension and retraction of Type IV pili which bind ligands normally found in matrix exopolysaccharides (EPS). Previous studies showed that FrzS, a protein required for S-motility, is organized in polar clusters that show pole-to-pole translocation as cells reverse their direction of movement. Since the leading cell pole is the site of both the major FrzS cluster and type IV pilus extension/retraction, it was suggested that FrzS might regulate S-motility by activating pili at the leading cell pole. Here, we show that FrzS regulates EPS production, rather than type IV pilus function. We found that the frzS phenotype is distinct from that of Type IV pilus mutants such as pilA and pilT, but indistinguishable from EPS mutants, such as epsZ. Indeed, frzS mutants can be rescued by the addition of purified EPS, 1% methylcellulose, or co-culturing with wildtype cells. Our data also indicate that the cell density requirement in S-motility is likely a function of the ability of cells to construct functional multicellular clusters surrounding an EPS core

    Moore Foundation Microbial Diversity Award, May 2010

    No full text

    Mentorship service for Sigma Xi Undergraduate Research Award, Oct 2013

    No full text

    Lawrence Berkeley National Lab - Visiting Faculty Program, Jun-Aug 2013

    No full text

    Bacteria\u27s Private line. New York Times ScienceTake

    No full text

    Best Talk - 13th Annual UC Berkeley Microbiology Symposium, April 2012

    No full text

    Lawrence Berkeley National Lab - Visiting Faculty Program

    No full text
    corecore