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B cell-intrinsic MyD88 signaling prevents the lethal dissemination of commensal bacteria during colonic damage.


ABSTRACT: The Toll-like receptor adaptor protein MyD88 is essential for the regulation of intestinal homeostasis in mammals. In this study, we determined that Myd88-deficient mice are susceptible to colonic damage that is induced by dextran sulfate sodium (DSS) administration resulting from uncontrolled dissemination of intestinal commensal bacteria. The DSS-induced mortality of Myd88-deficient mice was completely prevented by antibiotic treatment to deplete commensal bacteria. By using cell type-specific Myd88-deficient mice, we established that B cell-intrinsic MyD88 signaling plays a central role in the resistance to DSS-induced colonic damage via the production of IgM and complement-mediated control of intestinal bacteria. Our results indicate that the lack of intact MyD88 signaling in B cells, coupled with impaired epithelial integrity, enables commensal bacteria to function as highly pathogenic organisms, causing rapid host death.

SUBMITTER: Kirkland D 

PROVIDER: S-EPMC3288553 | biostudies-literature | 2012 Feb

REPOSITORIES: biostudies-literature

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B cell-intrinsic MyD88 signaling prevents the lethal dissemination of commensal bacteria during colonic damage.

Kirkland Donna D   Benson Alicia A   Mirpuri Julie J   Pifer Reed R   Hou Baidong B   DeFranco Anthony L AL   Yarovinsky Felix F  

Immunity 20120201 2


The Toll-like receptor adaptor protein MyD88 is essential for the regulation of intestinal homeostasis in mammals. In this study, we determined that Myd88-deficient mice are susceptible to colonic damage that is induced by dextran sulfate sodium (DSS) administration resulting from uncontrolled dissemination of intestinal commensal bacteria. The DSS-induced mortality of Myd88-deficient mice was completely prevented by antibiotic treatment to deplete commensal bacteria. By using cell type-specific  ...[more]

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