Stanforth Kyle J, Zakhour Maria I, Chater Peter I, Wilcox Matthew D, Adamson Beth, Robson Niamh A, Pearson Jeffrey P
Aelius Biotech, The Medical School, Framlington Place, Newcastle-upon-Tyne NE2 4HH, UK.
Biosciences Institute, Newcastle University Biosciences Institute, Catherine Cookson Building, Framlington Place, Newcastle-upon-Tyne NE2 4HH, UK.
Polymers (Basel). 2024 Jun 12;16(12):1663. doi: 10.3390/polym16121663.
MUC2 mucin, the primary gel-forming component of intestinal mucus, is well researched and a model of polymerisation and post-secretory organisation has been published previously. Recently, several significant developments have been made which either introduce new ideas or challenge previous theories. New ideas include an overhaul of the MUC2 C-terminal globular structure which is proposed to harbour several previously unobserved domains, and include a site for an extra intermolecular disulphide bridge dimer between the cysteine 4379 of adjacent MUC2 C-termini. MUC2 polymers are also now thought to be secreted attached to the epithelial surface of goblet cells in the small intestine and removed following secretion via a metalloprotease meprin β-mediated cleavage of the von Willebrand D2 domain of the N-terminus. It remains unclear whether MUC2 forms intermolecular dimers, trimers, or both, at the N-termini during polymerisation, with several articles supporting either trimer or dimer formation. The presence of a firm inner mucus layer in the small intestine is similarly unclear. Considering this recent research, this review proposes an update to the previous model of MUC2 polymerisation and secretion, considers conflicting theories and data, and highlights the importance of this research to the understanding of MUC2 mucus layers in health and disease.
MUC2黏蛋白是肠道黏液的主要凝胶形成成分,已得到充分研究,此前也已发表了其聚合和分泌后组织的模型。最近,出现了几项重大进展,要么引入了新观点,要么对先前的理论提出了挑战。新观点包括对MUC2 C末端球状结构的全面修订,该结构被认为含有几个以前未观察到的结构域,并且包括相邻MUC2 C末端的半胱氨酸4379之间额外分子间二硫键二聚体的位点。现在还认为,MUC2聚合物在分泌时附着于小肠杯状细胞的上皮表面,并在分泌后通过金属蛋白酶meprin β介导的N末端血管性血友病因子D2结构域的切割而被清除。目前尚不清楚MUC2在聚合过程中在N末端是否形成分子间二聚体、三聚体或两者皆有,有几篇文章支持三聚体或二聚体的形成。小肠中坚实的内层黏液层的存在同样不明确。考虑到最近的这项研究,本综述提议对先前的MUC2聚合和分泌模型进行更新,对相互矛盾的理论和数据进行考量,并强调这项研究对于理解健康和疾病状态下MUC2黏液层的重要性。