Notch信号通路
小岛
槽口1
细胞生物学
生物
内分泌学
内科学
以法林
信号转导
胰岛素
医学
作者
Alberto Bartolomé,Nina Suda,Junjie Yu,Changyu Zhu,Jinsook Son,Hongxu Ding,Andrea Califano,Domenico Accili,Utpal B. Pajvani
出处
期刊:JCI insight
[American Society for Clinical Investigation]
日期:2022-02-15
卷期号:7 (6)
被引量:11
标识
DOI:10.1172/jci.insight.157694
摘要
Altered islet architecture is associated with β cell dysfunction and type 2 diabetes (T2D) progression, but molecular effectors of islet spatial organization remain mostly unknown. Although Notch signaling is known to regulate pancreatic development, we observed "reactivated" β cell Notch activity in obese mouse models. To test the repercussions and reversibility of Notch effects, we generated doxycycline-dependent, β cell-specific Notch gain-of-function mice. As predicted, we found that Notch activation in postnatal β cells impaired glucose-stimulated insulin secretion and glucose intolerance, but we observed a surprising remnant glucose intolerance after doxycycline withdrawal and cessation of Notch activity, associated with a marked disruption of normal islet architecture. Transcriptomic screening of Notch-active islets revealed increased Ephrin signaling. Commensurately, exposure to Ephrin ligands increased β cell repulsion and impaired murine and human pseudoislet formation. Consistent with our mouse data, Notch and Ephrin signaling were increased in metabolically inflexible β cells in patients with T2D. These studies suggest that β cell Notch/Ephrin signaling can permanently alter islet architecture during a morphogenetic window in early life.
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