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全身性、神经元特异性或β细胞特异性敲除 inceptor 可改善饮食诱导肥胖雄性小鼠的葡萄糖稳态。

Global, neuronal or β cell-specific deletion of inceptor improves glucose homeostasis in male mice with diet-induced obesity.

机构信息

Institute of Diabetes and Obesity, Helmholtz Center Munich, Neuherberg, Germany.

German Center for Diabetes Research, Neuherberg, Germany.

出版信息

Nat Metab. 2024 Mar;6(3):448-457. doi: 10.1038/s42255-024-00991-3. Epub 2024 Feb 28.

Abstract

Insulin resistance is an early complication of diet-induced obesity (DIO), potentially leading to hyperglycaemia and hyperinsulinaemia, accompanied by adaptive β cell hypertrophy and development of type 2 diabetes. Insulin not only signals via the insulin receptor (INSR), but also promotes β cell survival, growth and function via the insulin-like growth factor 1 receptor (IGF1R). We recently identified the insulin inhibitory receptor (inceptor) as the key mediator of IGF1R and INSR desensitization. But, although β cell-specific loss of inceptor improves β cell function in lean mice, it warrants clarification whether inceptor signal inhibition also improves glycaemia under conditions of obesity. We assessed the glucometabolic effects of targeted inceptor deletion in either the brain or the pancreatic β cells under conditions of DIO in male mice. In the present study, we show that global and neuronal deletion of inceptor, as well as its adult-onset deletion in the β cells, improves glucose homeostasis by enhancing β cell health and function. Moreover, we demonstrate that inceptor-mediated improvement in glucose control does not depend on inceptor function in agouti-related protein-expressing or pro-opiomelanocortin neurons. Our data demonstrate that inceptor inhibition improves glucose homeostasis in mice with DIO, hence corroborating that inceptor is a crucial regulator of INSR and IGF1R signalling.

摘要

胰岛素抵抗是饮食诱导肥胖(DIO)的早期并发症,可能导致高血糖和高胰岛素血症,同时伴有适应性β细胞肥大和 2 型糖尿病的发展。胰岛素不仅通过胰岛素受体(INSR)发出信号,还通过胰岛素样生长因子 1 受体(IGF1R)促进β细胞的存活、生长和功能。我们最近发现胰岛素抑制受体(inceptor)是 IGF1R 和 INSR 脱敏的关键介质。但是,尽管在瘦鼠中β细胞特异性缺失 inceptor 可以改善β细胞功能,但仍需要澄清在肥胖情况下抑制 inceptor 信号是否也能改善血糖水平。我们评估了在雄性小鼠的 DIO 条件下,inceptor 在大脑或胰腺β细胞中的靶向缺失对糖代谢的影响。在本研究中,我们表明 inceptor 的全局和神经元缺失,以及其在β细胞中的成年期缺失,通过增强β细胞健康和功能来改善葡萄糖稳态。此外,我们证明 inceptor 介导的葡萄糖控制改善不依赖于表达 agouti 相关蛋白或 pro-opiomelanocortin 神经元中的 inceptor 功能。我们的数据表明,inceptor 抑制可改善 DIO 小鼠的葡萄糖稳态,因此证实了 inceptor 是 INSR 和 IGF1R 信号的关键调节剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea46/10963260/9c86093f44d2/42255_2024_991_Fig1_HTML.jpg

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