4.6 Article

Stress granule formation mediates the inhibition of colonic Hsp70 translation by interferon-γ and tumor necrosis factor-α

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajpgi.00234.2009

关键词

inflammatory bowel disease; IFN-gamma

资金

  1. National Institute of Diabetes and Digestive and Kidney Diseases [DK-47722, DK-38510]
  2. Crohn's and Colitis Foundation of America [DK-42086]

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Hu S, Claud EC, Musch MW, Chang EB. Stress granule formation mediates the inhibition of colonic Hsp70 translation by interferon-gamma and tumor necrosis factor-alpha. Am J Physiol Gastrointest Liver Physiol 298: G481-G492, 2010. First published January 28, 2010; doi: 10.1152/ajpgi.00234.2009.-Mucosal inflammation, through cytokines such as interferon-gamma (IFN-gamma) and tumor necrosis factor-alpha (TNF-alpha), has many effects on the intestinal epithelium, including selective translational inhibition of the cytoprotective protein heat shock protein 70 ( Hsp70). To further elucidate the mechanisms underlying this effect, we examined the role of stress granules in mediating the actions of these proinflammatory cytokines. Using conditionally immortalized young adult mouse colonic epithelial cells, we demonstrate that IFN-gamma and TNF-alpha, which upregulate eukaryotic initiation factor-alpha (eIF-2 alpha) phosphorylation and reduce Hsp70 translation, significantly enhance stress granule formation in heat-shocked intestinal epithelial cells. The IFN-alpha and TNF-alpha effects in upregulation of stress granule formation and downregulation of Hsp70 were eIF-2 alpha dependent, and the effect could be negated by blocking eIF-2 alpha phosphorylation with use of an RNA-dependent protein kinase inhibitor. Correspondingly, IFN-gamma and TNF-alpha increased binding of cytoplasmic proteins to the 3'-untranslated region of Hsp70 mRNA, suggesting specific recruitment of Hsp70 to stress granules as the mechanism of IFN-alpha and TNF-alpha inhibition of Hsp70 translation. We thus report a novel linkage between inflammatory cytokine production, stress granule formation, and Hsp70 translation inhibition, providing additional insights into the response of intestinal epithelial cells to inflammatory stress.

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