Centre for Genomic Regulation, The Barcelona Institute for Science and Technology, 08003 Barcelona, Spain.
Renal Physiopathology Group, Vall d'Hebron Institut de Recerca, Barcelona, 08035 Spain.
Proc Natl Acad Sci U S A. 2022 Oct 25;119(43):e2205277119. doi: 10.1073/pnas.2205277119. Epub 2022 Oct 17.
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 mice phenotype, which are protected from UC. 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.
黏蛋白是保护消化道免受病原体侵害的黏液层的主要宏观成分。黏蛋白的岩藻糖基化增加了黏液的粘弹性及其抗剪切应力的能力。这些特性在溃疡性结肠炎(UC)患者中发生改变,UC 以结肠远端的慢性炎症为特征。在这里,我们表明 FUT8 和特定黏蛋白的水平在 UC 患者的远端炎症结肠中增加。在黏蛋白产生的 HT29-18N2 结肠细胞系中重现这种 FUT8 过表达会增加 MUC1 向质膜的传递以及 MUC2 和 MUC5AC 的细胞外释放。与 FUT8 耗尽细胞(FUT8 KD)分泌的黏蛋白相比,过表达 FUT8 的细胞分泌的黏蛋白更能抵抗从细胞表面去除。FUT8 KD 导致 MUC1 在细胞内积累,并改变分泌的 MUC2 与 MUC5AC 的比例。这些数据与免受 UC 影响的 小鼠的表型非常吻合。 小鼠表现出更薄的近端结肠黏液层,中性与酸性黏蛋白的比例发生改变。总之,我们的数据表明 FUT8 通过控制细胞表面 MUC1 的水平以及分泌的 MUC2 和 MUC5AC 的数量和质量来改变黏液的生物物理特性。我们认为,这些黏液粘弹性的变化可能促进了细菌-上皮相互作用,导致炎症和 UC 的进展。