内分泌学
内科学
葡萄糖稳态
丁酸盐
血糖调节
兴奋剂
生物
胰岛素
平衡
碳水化合物代谢
糖尿病
受体
调节器
2型糖尿病
饮食性肥胖
肥胖
葡萄糖摄取
糖耐量试验
小岛
分泌物
胰岛素抵抗
新陈代谢
代谢综合征
信号转导
代谢途径
敌手
受体拮抗剂
肠道菌群
车站3
化学
胰岛素受体
能量稳态
胰高血糖素样肽-1
白细胞介素
医学
胰岛
作者
Chae-Won Kim,Jae-Hee Ahn,Bo Ra Lee,H. C. Kim,Youngjoo Han Han,Jae-Hyeon Jeong,Jaewon Cho,Hyunjin Jeong,Dae-Joon Kim,Seong-Eun Kim,Jeon-Kyung Kim,Y LEE,Sumin Kim,Hye Hyun Yoo,Eun Hye Lee,Su Ryeon Seo,Kyung Bong Ha,Eun Soo Lee,M N Kweon,H. C. Kim
标识
DOI:10.1038/s41467-026-69734-0
摘要
Metabolic disorders such as obesity and diabetes are influenced by glucagon-like peptide-1 (GLP-1), which regulates insulin secretion. Interleukin (IL)-22 maintains intestinal barrier function, yet its role in metabolic regulation remains unclear. Here, we show that intestinal IL-22 deficiency reduces GLP-1 production and impairs glucose tolerance in high-fat diet-fed male mice, whereas long-term IL-22 administration restores GLP-1 levels, improves glucose tolerance, and normalizes insulin secretion and pancreatic islet size. IL-22 activates STAT3 binding to the Gcg promoter, indicating a direct role in GLP-1 induction. Butyrate supplementation increased IL-22 levels and enhanced GLP-1 production in an IL-22R-dependent manner, suggesting that microbial metabolites contribute to IL-22-mediated metabolic regulation. Direct IL-22 administration elevated circulating GLP-1 and improved glucose intolerance, while GLP-1 agonist treatment rescued metabolic defects associated with reduced IL-22 signaling. Conversely, the GLP-1 receptor antagonist exendin-9-39 abolished the glucose-lowering effects of IL-22, demonstrating that IL-22 acts primarily through GLP-1-dependent pathways. These findings identify IL-22 as an important regulator of intestinal GLP-1 production and glucose homeostasis during diet-induced obesity and highlight IL-22-GLP-1 signaling as a potential therapeutic axis for metabolic disorders.
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