Mechanical regulation of lipid and sugar absorption by Piezo1 in enterocytes

Tian Tao,Qing Shu, Yawen Zhao, Wenying Guo, Jinting Wang, Yuhao Shi,Shiqi Jia,Hening Zhai,Hui Chen,Cunchuan Wang,Geyang Xu

Acta Pharmaceutica Sinica B(2024)

引用 0|浏览5
暂无评分
摘要
Obesity is primarily caused by excessive intake as well as absorption of sugar and lipid. Postprandial surge in distention pressure and intestinal motility accelerates the absorption of nutrients. The response of intestinal epithelial cells to mechanical stimulation is not fully understood. Piezo1, a mechanosensitive ion channel, is widely expressed throughout the digestive tract. However, its function in intestinal nutrient absorption is not yet clear. In our study, excessive lipid deposition was observed in the duodenum of obese patients, while duodenal Piezo1–CaMKK2–AMPKα was decreased when compared to normal-weight individuals. Under high-fat diet condition, the Piezo1iKO mice exhibited abnormally elevated sugar and lipid absorption as well as severe lipid deposition in the duodenum and liver. These phenotypes were mainly caused by the inhibition of duodenal CaMKK2–AMPKα and the upregulation of SGLT1 and DGAT2. In contrast, Yoda1, a Piezo1 agonist, was found to reduce intestinal lipid absorption in diet induced obese mice. Overexpression of Piezo1, stretch and Yoda1 inhibited lipid accumulation and the expression of DGAT2 and SGLT1, whereas knockdown of Piezo1 stimulated lipid accumulation and DGAT2 in Caco-2 cells. Our study reveals a previously unexplored mechanical regulation of nutrient absorption in intestinal epithelial cells, which may shed new light on the therapy of obesity.
更多
查看译文
关键词
Piezo1,DGAT2,SGLT1,Lipid metabolism,Obesity,Mechanical sensing,Intestinal lipid absorption,Intestinal glucose absorption
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要