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Updated: Jan 10, 2026

Mouse- and Human-derived Primary Gastric Epithelial Monolayer Culture for the Study of Regeneration
Published on: May 7, 2018
Multimerin1, not Galectin-8, Promotes Gastric Chief Cell Differentiation by Tempering WNT Signaling
Xiaobo Lin1, Gabriel Nicolazzi1, Xuemei Liu1
1Division of Gastroenterology, Department of Medicine, Washington University in St. Louis, School of Medicine, St. Louis, MO, USA.
Abstract:
Galectins are a family of proteins that bind galactose-containing glycans. One member, galectin-8, preferentially binds galactose that contains a terminal sulfate. Aberrant expression and secretion of sulfated glycosylation epitopes, such as 3'-Sulfo-LeA/C, is a feature of high-risk human foregut metaplasias. In addition, recent work has demonstrated that 3'-Sulfo-LeC is a marker of mature murine zymogenic chief cells of the stomach and that 3'-Sulfo-LeC epitope is secreted via cathartocytosis during the cellular transition to a metaplastic state. Based on those findings, we used Lgals8-/- mice, to determine whether galectin-8 might play a role in chief cell homeostasis. We observed delayed gastric differentiation in the Lgals8-/- mice and discovered that this phenotype was due to an unappreciated deletion of Mmrn1 and Snca in the Lgals8-/- line. We show that multimerin-1 tempers WNT stimulation of the gastric corpus at an early age, as evidenced by nuclear beta-catenin staining and proliferation throughout the gland. Because multimerin-1 is synthesized and secreted from endothelial cells and not from the epithelial compartment, these data uncover a role for mesodermal cells in epithelial developmental and maturation of the mouse stomach. As prior studies have suggested galectin-8 and multimerin-1 have overlapping functions albeit, divergent with respect to bone, future studies using pure knockouts are necessary to refine these phenotypes.
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