Division of Endocrinology and Metabolism, Department of Medicine, University of California San Diego, La Jolla, CA.
Maimonides Institute of Biomedical Research of Cordoba, Cordoba, Spain.
Diabetes. 2022 Jul 1;71(7):1508-1524. doi: 10.2337/db21-0736.
In obesity, increased mitochondrial metabolism with the accumulation of oxidative stress leads to mitochondrial damage and β-cell dysfunction. In particular, β-cells express antioxidant enzymes at relatively low levels and are highly vulnerable to oxidative stress. Early in the development of obesity, β-cells exhibit increased glucose-stimulated insulin secretion in order to compensate for insulin resistance. This increase in β-cell function under the condition of enhanced metabolic stress suggests that β-cells possess a defense mechanism against increased oxidative damage, which may become insufficient or decline at the onset of type 2 diabetes. Here, we show that metabolic stress induces β-cell hypoxia inducible factor 2α (HIF-2α), which stimulates antioxidant gene expression (e.g., Sod2 and Cat) and protects against mitochondrial reactive oxygen species (ROS) and subsequent mitochondrial damage. Knockdown of HIF-2α in Min6 cells exaggerated chronic high glucose-induced mitochondrial damage and β-cell dysfunction by increasing mitochondrial ROS levels. Moreover, inducible β-cell HIF-2α knockout mice developed more severe β-cell dysfunction and glucose intolerance on a high-fat diet, along with increased ROS levels and decreased islet mitochondrial mass. Our results provide a previously unknown mechanism through which β-cells defend against increased metabolic stress to promote β-cell compensation in obesity.
在肥胖症中,线粒体代谢增加伴随着氧化应激的积累,导致线粒体损伤和β细胞功能障碍。特别是,β细胞表达的抗氧化酶水平相对较低,极易受到氧化应激的影响。在肥胖症的早期发展中,β细胞表现出葡萄糖刺激的胰岛素分泌增加,以代偿胰岛素抵抗。在代谢应激增强的情况下,β细胞功能的这种增加表明β细胞具有针对增加的氧化损伤的防御机制,但这种机制在 2 型糖尿病发作时可能不足或衰退。在这里,我们表明代谢应激诱导β细胞低氧诱导因子 2α(HIF-2α),这刺激抗氧化基因的表达(例如 Sod2 和 Cat)并防止线粒体活性氧(ROS)和随后的线粒体损伤。在 Min6 细胞中敲低 HIF-2α会通过增加线粒体 ROS 水平,加剧慢性高葡萄糖诱导的线粒体损伤和β细胞功能障碍。此外,在高脂肪饮食中,可诱导的β细胞 HIF-2α敲除小鼠表现出更严重的β细胞功能障碍和葡萄糖不耐受,同时伴有 ROS 水平升高和胰岛线粒体质量减少。我们的研究结果提供了一个以前未知的机制,通过该机制β细胞可以抵御增加的代谢应激,从而促进肥胖症中β细胞的代偿。