R-spondin/YAP axis promotes gastric oxyntic gland regeneration and Helicobacter pylori–associated metaplasia in mice

生物 再生(生物学) 肠化生 化生 细胞生物学 幽门螺杆菌 螺杆菌 胃粘膜 癌症研究 胃肠病学 病理 解剖 医学 内科学
作者
Anne‐Sophie Fischer,Stefanie Müllerke,Alexander Arnold,Julian Heuberger,Hilmar Berger,Manqiang Lin,Hans‐Joachim Mollenkopf,Jonas Wizenty,David Horst,Frank Tacke,Michael Sigal
出处
期刊:Journal of Clinical Investigation [American Society for Clinical Investigation]
卷期号:132 (21) 被引量:14
标识
DOI:10.1172/jci151363
摘要

The stomach corpus epithelium is organized into anatomical units that consist of glands and pits. Mechanisms that control the cellular organization of corpus glands and enable their recovery upon injury are not well understood. R-spondin 3 (RSPO3) is a WNT-signaling enhancer that regulates stem cell behavior in different organs. Here, we investigated the function of RSPO3 in the corpus during homeostasis, upon chief and/or parietal cell loss, and during chronic Helicobacter pylori infection. Using organoid culture and conditional mouse models, we demonstrate that RSPO3 is a critical driver of secretory cell differentiation in the corpus gland toward parietal and chief cells, while its absence promoted pit cell differentiation. Acute loss of chief and parietal cells induced by high dose tamoxifen — or merely the depletion of LGR5+ chief cells — caused an upregulation of RSPO3 expression, which was required for the initiation of a coordinated regenerative response via the activation of yes-associated protein (YAP) signaling. This response enabled a rapid recovery of the injured secretory gland cells. However, in the context of chronic H. pylori infection, the R-spondin–driven regeneration was maintained long term, promoting severe glandular hyperproliferation and the development of premalignant metaplasia.
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