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糖尿病抗性和易感小鼠β细胞群体的异质性发育。

Heterogeneous Development of β-Cell Populations in Diabetes-Resistant and -Susceptible Mice.

机构信息

Department of Experimental Diabetology, German Institute of Human Nutrition Potsdam-Rehbrücke (DIfE), Nuthetal, Germany.

German Center for Diabetes Research (DZD), Neuherberg, Germany.

出版信息

Diabetes. 2022 Sep 1;71(9):1962-1978. doi: 10.2337/db21-1030.

Abstract

Progressive dysfunction and failure of insulin-releasing β-cells are a hallmark of type 2 diabetes (T2D). To study mechanisms of β-cell loss in T2D, we performed islet single-cell RNA sequencing of two obese mouse strains differing in their diabetes susceptibility. With mice on a control diet, we identified six β-cell clusters with similar abundance in both strains. However, after feeding of a diabetogenic diet for 2 days, β-cell cluster composition markedly differed between strains. Islets of diabetes-resistant mice developed into a protective β-cell cluster (Beta4), whereas those of diabetes-prone mice progressed toward stress-related clusters with a strikingly different expression pattern. Interestingly, the protective cluster showed indications of reduced β-cell identity, such as downregulation of GLUT2, GLP1R, and MafA, and in vitro knockdown of GLUT2 in β-cells-mimicking its phenotype-decreased stress response and apoptosis. This might explain enhanced β-cell survival of diabetes-resistant islets. In contrast, β-cells of diabetes-prone mice responded with expression changes indicating metabolic pressure and endoplasmic reticulum stress, presumably leading to later β-cell loss. In conclusion, failure of diabetes-prone mice to adapt gene expression toward a more dedifferentiated state in response to rising blood glucose levels leads to β-cell failure and diabetes development.

摘要

胰岛素分泌β细胞进行性功能障碍和衰竭是 2 型糖尿病(T2D)的标志。为了研究 T2D 中β细胞丢失的机制,我们对两种肥胖小鼠品系进行了胰岛单细胞 RNA 测序,这两种品系在糖尿病易感性上存在差异。在正常饮食喂养的情况下,我们在两种品系中均发现了具有相似丰度的 6 个β细胞簇。然而,在给予致糖尿病饮食 2 天后,两种品系之间β细胞簇组成明显不同。糖尿病抗性小鼠的胰岛形成了保护性β细胞簇(Beta4),而糖尿病易感小鼠的胰岛则向应激相关的簇发展,其表达模式明显不同。有趣的是,保护性簇表现出β细胞特性降低的迹象,如 GLUT2、GLP1R 和 MafA 的下调,以及体外敲低β细胞中的 GLUT2,模拟其表型,减少应激反应和细胞凋亡。这可能解释了糖尿病抗性胰岛中β细胞存活能力增强的原因。相比之下,糖尿病易感小鼠的β细胞则表现出代谢压力和内质网应激的表达变化,可能导致后期β细胞丢失。总之,糖尿病易感小鼠未能适应血糖升高导致的基因表达向更去分化状态的发展,导致β细胞衰竭和糖尿病的发生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/597d/9862397/6cc9c4436712/db211030f1.jpg

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