Aberrant Mucin Assembly in Mice Causes Endoplasmic Reticulum Stress and Spontaneous Inflammation Resembling Ulcerative Colitis
Aberrant Mucin Assembly in Mice Causes Endoplasmic Reticulum Stress and Spontaneous Inflammation Resembling Ulcerative Colitis
MUC2 mucin produced by intestinal goblet cells is the major component of the intestinal mucus barrier. The inflammatory bowel disease ulcerative colitis is characterized by depleted goblet cells and a reduced mucus layer, but the aetiology remains obscure. In this study we used random mutagenesis to produce two murine models of inflammatory bowel disease, characterised the basis and nature of the inflammation in these mice, and compared the pathology with human ulcerative colitis.By murine N-ethyl-N-nitrosourea mutagenesis we identified two distinct noncomplementing missense mutations in Muc2 causing an ulcerative colitis-like phenotype. 100% of mice of both strains developed mild spontaneous distal intestinal inflammation by 6 wk (histological colitis scores versus wild-type mice, p < 0.01) and chronic diarrhoea. Monitoring over 300 mice of each strain demonstrated that 25% and 40% of each strain, respectively, developed severe clinical signs of colitis by age 1 y. Mutant mice showed aberrant Muc2 biosynthesis, less stored mucin in goblet cells, a diminished mucus barrier, and increased susceptibility to colitis induced by a luminal toxin. Enhanced local production of IL-1beta, TNF-alpha, and IFN-gamma was seen in the distal colon, and intestinal permeability increased 2-fold. The number of leukocytes within mesenteric lymph nodes increased 5-fold and leukocytes cultured in vitro produced more Th1 and Th2 cytokines (IFN-gamma, TNF-alpha, and IL-13). This pathology was accompanied by accumulation of the Muc2 precursor and ultrastructural and biochemical evidence of endoplasmic reticulum (ER) stress in goblet cells, activation of the unfolded protein response, and altered intestinal expression of genes involved in ER stress, inflammation, apoptosis, and wound repair. Expression of mutated Muc2 oligomerisation domains in vitro demonstrated that aberrant Muc2 oligomerisation underlies the ER stress. In human ulcerative colitis we demonstrate similar accumulation of nonglycosylated MUC2 precursor in goblet cells together with ultrastructural and biochemical evidence of ER stress even in noninflamed intestinal tissue. Although our study demonstrates that mucin misfolding and ER stress initiate colitis in mice, it does not ascertain the genetic or environmental drivers of ER stress in human colitis.Characterisation of the mouse models we created and comparison with human disease suggest that ER stress-related mucin depletion could be a fundamental component of the pathogenesis of human colitis and that clinical studies combining genetics, ER stress-related pathology and relevant environmental epidemiology are warranted.
- Australian National University Australia
- Northamptonshire Healthcare NHS Foundation Trust United Kingdom
- University of Melbourne Australia
- University of Salford United Kingdom
- Wellcome Trust United Kingdom
Male, Protein Folding, Crohns-disease, interleukin 1beta, colitis, diarrhea, protein precursor, 060403 Developmental Genetics (incl. Sex Determination), Apoptosis, Endoplasmic Reticulum, Mice, Monozygotic Twins, Keywords: ethylnitrosourea, Intestinal Mucosa, enteritis, toxin, clinical article, intestine mucosa permeability, tumor necrosis factor alpha, goblet cell, Epithelial-cells, apoptosis, article, R, Core Protein, Middle Aged, Bowel-disease patients, female, immunohistochemistry, endoplasmic reticulum stress, histopathology, cytokine production, mouse strain, Medicine, disease severity, gamma interferon, Goblet Cells, Factor-kappa-b, leukocyte, Tumor-necrosis-factor, Research Article, Adult, 570, NK-T-Cells, phenotype, animal experiment, protein assembly, 610, 970111 Expanding Knowledge in the Medical and Health Sciences, oligomerization, animal tissue, ethylnitrosourea, C1, male, mucin, Animals, Humans, controlled study, Genetic Predisposition to Disease, human, immunofluorescence, protein expression, mouse, Cell Proliferation, Inflammation, cell culture, Mucin-2, nonhuman, MUC2 protein, colon, missense mutation, disease predisposition, Mucins, nucleotide sequence, Human Colonic Mucin, mucin 2, cell cul, human tissue, mesentery lymph node, Mice, Inbred C57BL, Gene Expression Regulation, 970106 Expanding Knowledge in the Biological Sciences, Mutation, Unfolded Protein Response, gene expression, 110706 Immunogenetics (incl. Genetic Immunology), interleukin 13, Colitis, Ulcerative
Male, Protein Folding, Crohns-disease, interleukin 1beta, colitis, diarrhea, protein precursor, 060403 Developmental Genetics (incl. Sex Determination), Apoptosis, Endoplasmic Reticulum, Mice, Monozygotic Twins, Keywords: ethylnitrosourea, Intestinal Mucosa, enteritis, toxin, clinical article, intestine mucosa permeability, tumor necrosis factor alpha, goblet cell, Epithelial-cells, apoptosis, article, R, Core Protein, Middle Aged, Bowel-disease patients, female, immunohistochemistry, endoplasmic reticulum stress, histopathology, cytokine production, mouse strain, Medicine, disease severity, gamma interferon, Goblet Cells, Factor-kappa-b, leukocyte, Tumor-necrosis-factor, Research Article, Adult, 570, NK-T-Cells, phenotype, animal experiment, protein assembly, 610, 970111 Expanding Knowledge in the Medical and Health Sciences, oligomerization, animal tissue, ethylnitrosourea, C1, male, mucin, Animals, Humans, controlled study, Genetic Predisposition to Disease, human, immunofluorescence, protein expression, mouse, Cell Proliferation, Inflammation, cell culture, Mucin-2, nonhuman, MUC2 protein, colon, missense mutation, disease predisposition, Mucins, nucleotide sequence, Human Colonic Mucin, mucin 2, cell cul, human tissue, mesentery lymph node, Mice, Inbred C57BL, Gene Expression Regulation, 970106 Expanding Knowledge in the Biological Sciences, Mutation, Unfolded Protein Response, gene expression, 110706 Immunogenetics (incl. Genetic Immunology), interleukin 13, Colitis, Ulcerative
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