Literature DB >> 18635600

Role of MutS homolog 2 (MSH2) in intestinal myofibroblast proliferation during Crohn's disease stricture formation.

Martin Floer1, David G Binion, Victoria M Nelson, Sharon Manley, Michael Wellner, Saba Sadeghi, Behnaz Behmaram, Chloe Sewell, Mary F Otterson, Torsten Kucharzik, Parvaneh Rafiee.   

Abstract

Tissue remodeling and mesenchymal cell accumulation accompanies chronic inflammatory disorders involving joints, lung, vasculature, and bowel. Chronic inflammation may alter DNA-mismatch repair (MMR) systems in mesenchymal cells, but is not defined in Crohn's disease (CD) and its associated intestinal remodeling and stricture formation. We determined whether DNA-MMR alteration plays a role in the pathogenesis of CD tissue remodeling. Control and CD bowel tissues were used to generate primary cultures of muscularis mucosa myofibroblasts, which were assessed directly or following stimulation with TNF-alpha/LPS or H2O2. MutS homolog (MSH)2, MSH3, and MSH6 expression in tissues and myofibroblasts was determined. Immunohistochemical staining revealed an increased expression of MSH2 in CD muscularis mucosa and submucosal tissues compared with controls or uninvolved CD tissue, and MSH2 expression was increased in CD myofibroblasts compared with control cells. TNF-alpha/LPS and H2O2 further enhanced MSH2 expression in both control and CD cells, which were decreased by simvastatin. There were no significant changes in MSH3 and MSH6 expression. Proliferating cell nuclear antigen and Ki67 staining of CD tissue revealed increased proliferation in the muscularis mucosa and submucosa of chronically inflamed tissues, and enhanced proliferation was seen in CD myofibroblasts compared with controls. Simvastatin reversed the effects of inflammatory stress on the DNA-MMR and inhibited proliferation of control and CD myofibroblasts. Gene silencing with MSH2 siRNA selectively decreased CD myofibroblast proliferation. These data demonstrate a potential role for MSH2 in the pathogenesis of nonneoplastic mesenchymal cell accumulation and intestinal remodeling in CD chronic inflammation.

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Year:  2008        PMID: 18635600      PMCID: PMC2536780          DOI: 10.1152/ajpgi.90311.2008

Source DB:  PubMed          Journal:  Am J Physiol Gastrointest Liver Physiol        ISSN: 0193-1857            Impact factor:   4.052


  38 in total

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Review 3.  Mismatch repair genes hMLH1 and hMSH2 and colorectal cancer: a HuGE review.

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Journal:  Am J Epidemiol       Date:  2002-11-15       Impact factor: 4.897

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6.  Altered response of intestinal mucosal fibroblasts to profibrogenic cytokines in inflammatory bowel disease.

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Journal:  Inflamm Bowel Dis       Date:  2001-08       Impact factor: 5.325

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8.  Oxidative stress inactivates the human DNA mismatch repair system.

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9.  The DNA-mismatch repair enzyme hMSH2 modulates UV-B-induced cell cycle arrest and apoptosis in melanoma cells.

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10.  TNF-alpha induced endothelial MAdCAM-1 expression is regulated by exogenous, not endogenous nitric oxide.

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  2 in total

1.  Mismatch repair system in endometriotic tissue and eutopic endometrium of unaffected women.

Authors:  Tiziana Grassi; Angelo Calcagno; Stefania Marzinotto; Ambrogio P Londero; Maria Orsaria; Gioia N Canciani; Carlo Alberto Beltrami; Diego Marchesoni; Laura Mariuzzi
Journal:  Int J Clin Exp Pathol       Date:  2015-02-01

2.  Vascular cell adhesion molecule-1 expression in human intestinal microvascular endothelial cells is regulated by PI 3-kinase/Akt/MAPK/NF-kappaB: inhibitory role of curcumin.

Authors:  David G Binion; Jan Heidemann; Mona S Li; Victoria M Nelson; Mary F Otterson; Parvaneh Rafiee
Journal:  Am J Physiol Gastrointest Liver Physiol       Date:  2009-06-11       Impact factor: 4.052

  2 in total

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