The ulcerative colitis-associated gene FUT8 regulates the quantity and quality of secreted mucins

Author:

Cantero-Recasens Gerard12ORCID,Burballa Carla12ORCID,Ohkawa Yuki3ORCID,Fukuda Tomohiko4,Harada Yoichiro3,Curwin Amy J.1ORCID,Brouwers Nathalie1,Thun Gian A.5ORCID,Gu Jianguo4ORCID,Gut Ivo5,Taniguchi Naoyuki3ORCID,Malhotra Vivek167,

Affiliation:

1. Centre for Genomic Regulation, The Barcelona Institute for Science and Technology, 08003 Barcelona, Spain

2. Renal Physiopathology Group, Vall d’Hebron Institut de Recerca, Barcelona, 08035 Spain

3. Department of Glyco-Oncology and Medical Biochemistry, Osaka International Cancer Institute, Osaka 541-8567, Japan

4. Division of Regulatory Glycobiology, Institute of Molecular Biomembrane and Glycobiology, Tohoku Medical and Pharmaceutical University, Miyagi 981-8558, Japan

5. CNAG-CRG, Centre for Genomic Regulation (CRG), The Barcelona Institute of Science and Technology (BIST), Barcelona, 08028 Spain

6. Universitat Pompeu Fabra (UPF), Barcelona, 08002 Spain

7. Institució Catalana de Recerca i Estudis Avançats (ICREA), Barcelona, 08010 Spain

Abstract

Mucins are the main macrocomponents of the mucus layer that protects the digestive tract from pathogens. Fucosylation of mucins increases mucus viscoelasticity and its resistance to shear stress. These properties are altered in patients with ulcerative colitis (UC), which is marked by a chronic inflammation of the distal part of the colon. Here, we show that levels of Fucosyltransferase 8 (FUT8) and specific mucins are increased in the distal inflamed colon of UC patients. Recapitulating this FUT8 overexpression in mucin-producing HT29-18N2 colonic cell line increases delivery of MUC1 to the plasma membrane and extracellular release of MUC2 and MUC5AC. Mucins secreted by FUT8 overexpressing cells are more resistant to removal from the cell surface than mucins secreted by FUT8-depleted cells (FUT8 KD). FUT8 KD causes intracellular accumulation of MUC1 and alters the ratio of secreted MUC2 to MUC5AC. These data fit well with the Fut8 −/− mice phenotype, which are protected from UC. Fut8 −/− mice exhibit a thinner proximal colon mucus layer with an altered ratio of neutral to acidic mucins. Together, our data reveal that FUT8 modifies the biophysical properties of mucus by controlling levels of cell surface MUC1 and quantity and quality of secreted MUC2 and MUC5AC. We suggest that these changes in mucus viscoelasticity likely facilitate bacterial–epithelial interactions leading to inflammation and UC progression.

Funder

Consejería de Economía y Hacienda

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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