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2 型糖尿病患者脑胰岛素信号转导缺陷的基础是内皮细胞 caveolin-1 减少。

Reduced endothelial caveolin-1 underlies deficits in brain insulin signalling in type 2 diabetes.

机构信息

Department of Anatomy and Cell Biology, College of Medicine, The University of Illinois Chicago, Chicago, IL 60612, USA.

Department of Neurological Sciences, Rush University Medical Center, Chicago, IL 60612, USA.

出版信息

Brain. 2023 Jul 3;146(7):3014-3028. doi: 10.1093/brain/awad028.

DOI:10.1093/brain/awad028
PMID:36731883
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10316766/
Abstract

Patients with type 2 diabetes exhibit severe impairments in insulin signalling in the brain and are five times more likely to develop Alzheimer's disease. However, what leads to these impairments is not fully understood. Here, we show reduced expression of endothelial cell caveolin-1 (Cav-1) in the db/db (Leprdb) mouse model of type 2 diabetes. This reduction correlated with alterations in insulin receptor expression and signalling in brain microvessels as well as brain parenchyma. These findings were recapitulated in the brains of endothelial cell-specific Cav-1 knock-out (Tie2Cre; Cav-1fl/fl) mice. Lack of Cav-1 in endothelial cells led to reduced response to insulin as well as reduced insulin uptake. Furthermore, we observed that Cav-1 was necessary for the stabilization of insulin receptors in lipid rafts. Interactome analysis revealed that insulin receptor interacts with Cav-1 and caveolae-associated proteins, insulin-degrading enzyme and the tight junction protein Zonula Occludence-1 in brain endothelial cells. Restoration of Cav-1 in Cav-1 knock-out brain endothelial cells rescued insulin receptor expression and localization. Overall, these results suggest that Cav-1 regulates insulin signalling and uptake by brain endothelial cells by modulating IR-α and IR-β localization and function in lipid rafts. Furthermore, depletion of endothelial cell-specific Cav-1 and the resulting impairment in insulin transport leads to alteration in insulin signalling in the brain parenchyma of type 2 diabetics.

摘要

2 型糖尿病患者的大脑胰岛素信号转导严重受损,并且患阿尔茨海默病的风险增加五倍。然而,导致这些损伤的原因尚不完全清楚。在这里,我们在 2 型糖尿病的 db/db(Leprdb)小鼠模型中显示内皮细胞 caveolin-1(Cav-1)的表达减少。这种减少与脑微血管和脑实质中胰岛素受体表达和信号转导的改变相关。这些发现在内皮细胞特异性 Cav-1 敲除(Tie2Cre;Cav-1fl/fl)小鼠的大脑中得到了再现。内皮细胞中缺乏 Cav-1 导致对胰岛素的反应减弱以及胰岛素摄取减少。此外,我们观察到 Cav-1 对于胰岛素受体在脂筏中的稳定是必需的。相互作用分析表明,胰岛素受体与脑内皮细胞中的 Cav-1 和小窝相关蛋白、胰岛素降解酶和紧密连接蛋白 Zonula Occludence-1 相互作用。在 Cav-1 敲除的脑内皮细胞中恢复 Cav-1 挽救了胰岛素受体的表达和定位。总的来说,这些结果表明 Cav-1 通过调节胰岛素受体在脂筏中的定位和功能来调节脑内皮细胞的胰岛素信号转导和摄取。此外,内皮细胞特异性 Cav-1 的耗竭和由此导致的胰岛素转运受损导致 2 型糖尿病患者脑实质中胰岛素信号的改变。

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