4.7 Article

SHIP prevents lipopolysaccharide from triggering an antiviral response in mice

期刊

BLOOD
卷 113, 期 13, 页码 2945-2954

出版社

AMER SOC HEMATOLOGY
DOI: 10.1182/blood-2008-06-166082

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资金

  1. Canadian Cancer Society
  2. British Columbia Cancer Foundation
  3. British Columbia Cancer Agency
  4. National Institutes of Health [3R01EB0001987-12S1]
  5. MSFHR Trainee Award
  6. NSERC Trainee Awards
  7. GREAT Fellowship Awardee
  8. National Science Foundation Graduate Research Fellowship Awardee

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Gram-negative bacterial infections, unlike viral infections, do not typically protect against subsequent viral infections. This is puzzling given that lipopolysaccharide (LPS) and double-stranded (ds) RNA both activate the TIR domain-containing adaptor-inducing interferon beta (TRIF) pathway and, thus, are both capable of eliciting an antiviral response by stimulating type I interferon (IFN) production. We demonstrate herein that SH2-containing inositol-5'-phosphatase (SHIP) protein levels are dramatically increased in murine macrophages via the MyD88-dependent pathway, by up-regulating autocrine-acting transforming growth factor-beta (TGF beta). The increased SHIP then mediates, via inhibition of the phosphatidylinositol-3-kinase (PI3K) pathway, cytosine-phosphate-guanosine (CPG)- and LPS-induced tolerance and cross-tolerance and restrains IFN-beta production induced by a subsequent exposure to LPS or dsRNA. Intriguingly, we found, using isoform-specific PI3K inhibitors, that LPS-or cytosine-phosphate-guanosine-induced interleukin-6 (IL-6) is positively regulated by p110 alpha, -gamma, and -delta but negatively regulated by p110 beta. This may explain some of the controversy concerning the role of PI3K in Toll-like receptor-induced cytokine production. Consistent with our in vitro findings, SHIP-/- mice overproduce IFN-beta in response to LPS, and this leads to antiviral hypothermia. Thus, up-regulation of SHIP in response to Gram-negative bacterial infections probably explains the inability of such infections to protect against subsequent viral infections. (Blood. 2009; 113: 2945-2954)

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