Hu Li, He Fengli, Luo Yan, Luo Hairong, Hai Luo, Li Yabin, Zhou Zhiguang, Liu Feng, Dai Yan-Shan
Department of Metabolism and Endocrinology, The Second Xiangya Hospital, Central South University, Changsha, Hunan, China.
National Clinical Research Center for Metabolic Disease, The Second Xiangya Hospital, Central South University, Changsha, Hunan, China.
Exp Clin Endocrinol Diabetes. 2021 Sep;129(9):651-660. doi: 10.1055/a-1008-9110. Epub 2019 Sep 23.
High-fat-diet induces pancreatic β-cell compensatory proliferation, and impairments in pancreatic β-cell proliferation and function can lead to defects in insulin secretion and diabetes. NFATc3 is important for HFD-induced adipose tissue inflammation. But it is unknown whether NFATc3 is required for β cell compensatory growth in mice fed with HFD.
NFATc3 mRNA and protein expression levels were quantified by RT-qPCR and Western blotting, respectively, in pancreatic islets of WT mice fed on HFD for 12-20 weeks. Adenoviral-mediated overexpression of NFATc3 were conducted in Min6 cells and cultured primary mouse islets. NFATc3-/- mice and WT control mice were fed with HFD and metabolic and functional parameters were measured.
We observed that the NFATc3 expression level was reduced in the islets of high-fat-diet (HFD)-fed mice. Adenovirus-mediated overexpression of NFATc3 enhanced glucose-stimulated insulin secretion and β-cell gene expression in cultured primary mouse islets. Nfatc3-/- mice initially developed similar glucose tolerance at 2-4 weeks after HFD feeding than HFD-fed WT mice, but Nfatc3-/- mice developed improved glucose tolerance and insulin sensitivity after 8 weeks of HFD feeding compared to Nfatc3+/+fed with HFD. Furthermore, Nfatc3-/- mice on HFD exhibited decreased β-cell mass and reduced expression of genes important for β-cell proliferation and function compared to Nfatc3+/+mice on HFD.
The findings suggested that NFATc3 plays a role in maintaining the pancreatic β-cell compensatory growth and gene expression in response to obesity.
高脂饮食诱导胰腺β细胞代偿性增殖,胰腺β细胞增殖和功能受损可导致胰岛素分泌缺陷和糖尿病。NFATc3对高脂饮食诱导的脂肪组织炎症很重要。但尚不清楚在高脂饮食喂养的小鼠中,β细胞代偿性生长是否需要NFATc3。
分别通过RT-qPCR和蛋白质免疫印迹法对高脂饮食喂养12 - 20周的野生型小鼠胰岛中NFATc3的mRNA和蛋白质表达水平进行定量。在Min6细胞和原代培养的小鼠胰岛中进行腺病毒介导的NFATc3过表达。对NFATc3基因敲除小鼠和野生型对照小鼠进行高脂饮食喂养,并测量其代谢和功能参数。
我们观察到高脂饮食(HFD)喂养小鼠的胰岛中NFATc3表达水平降低。腺病毒介导的NFATc3过表达增强了原代培养小鼠胰岛中葡萄糖刺激的胰岛素分泌和β细胞基因表达。NFATc3基因敲除小鼠在高脂饮食喂养2 - 4周时最初表现出与高脂饮食喂养的野生型小鼠相似的糖耐量,但与高脂饮食喂养的NFATc3 +/+小鼠相比,高脂饮食喂养8周后NFATc3基因敲除小鼠的糖耐量和胰岛素敏感性得到改善。此外,与高脂饮食喂养的NFATc3 +/+小鼠相比,高脂饮食喂养的NFATc3基因敲除小鼠的β细胞量减少,β细胞增殖和功能重要基因的表达降低。
研究结果表明,NFATc3在肥胖状态下维持胰腺β细胞代偿性生长和基因表达中发挥作用。