Epithelial GREMLIN1 disrupts intestinal epithelial-mesenchymal crosstalk to induce a wnt-dependent ectopic stem cell niche through stromal remodelling

上皮细胞GREMLIN1通过基质重塑破坏肠道上皮-间质细胞间的相互作用,从而诱导Wnt依赖性异位干细胞微环境的形成

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作者:Eoghan J Mulholland #,Hayley L Belnoue-Davis #,Gabriel N Valbuena,Nuray Gunduz,Amelia Ligeza,Muyang Lin,Sujata Biswas,Ester Gil Vasquez,Sulochana Omwenga,Nadia Nasreddin,Michael C Hodder,Lai Mun Wang,Aik Seng Ng,Elizabeth Jennings,Kim S Midwood,Neesha Dedi,Shazia Irshad,Rachel A Ridgway,Toby J Phesse,James East,Ian Pm Tomlinson,Gareth Cg Davies,Owen J Sansom,Simon J Leedham    0

Abstract

In homeostasis, counterbalanced morphogen signalling gradients along the vertical axis of the intestinal mucosa regulate the fate and function of epithelial and stromal cell compartments. Here, we use a disease-positioned mouse and human tissue to explore the consequences of pathological BMP signalling dysregulation on epithelial-mesenchymal interaction. Aberrant pan-epithelial expression of the secreted BMP antagonist Grem1 results in ectopic crypt formation, with lineage tracing demonstrating the presence of Lgr5(-) stem/progenitor cells. Isolated epithelial cell Grem1 expression has no effect on individual cell fate, indicating an intercompartmental impact of mucosal-wide BMP antagonism. Treatment with an anti-Grem1 antibody abrogates the polyposis phenotype, and triangulation of specific pathway inhibitors defines a pathological sequence of events, with Wnt-ligand-dependent ectopic stem cell niches forming through stromal remodelling following BMP disruption. These data support an emerging co-evolutionary model of intestinal cell compartmentalisation based on bidirectional regulation of epithelial-mesenchymal cell fate and function.

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