线粒体
内科学
内分泌学
线粒体DNA
内皮功能障碍
糖尿病
线粒体融合
医学
线粒体通透性转换孔
活性氧
糖尿病性心肌病
膜电位
线粒体内膜
内皮
生物
内皮干细胞
ATP-ADP转位酶
钾通道
心脏功能不全
功能(生物学)
DNAJA3公司
缺氧(环境)
心功能曲线
心脏病学
缺血
三磷酸腺苷
化学
冠状动脉血流储备
细胞生物学
线粒体ROS
ATP合酶
微循环
作者
Bo Li,Yefei Shi,Ke Yang,Chang Liu,Qinfang Miao,Kadierya Yibulayin,Zhijun Lei,Bingyu Li,Shiyu Gong,Q Yu,Jianhui Zhuang,Haikun Qi,Wenhui Peng,Weixia Jian
摘要
Coronary microvascular dysfunction (CMD) is prevalent in diabetes. Ten-eleven translocation-2 (TET2) as the major demethylase in endothelial cells (ECs) is decreased in diabetic CMD, and the role warrants further exploration. In this study, a multi-modality imaging, consist of transthoracic Doppler echocardiography and artery spin labeling cardiac magnetic resonance, is assessed for coronary microvascular function. The expression of TET2 is down-regulated in the heart of diabetic CMD mice. ECs TET2 conditional knockout increases the severity of CMD in diabetic mice. Mechanistically, TET2 deficiency declined the expression of CMPK2, a mtDNA synthetase. Additionally, the mitochondrial electron transport chain complexes encoded by mitochondrial DNA (mtDNA) are down-regulated, which contributes to the excessive production of reactive oxygen species. This, in turn, exacerbated mitochondrial dysfunction, manifesting as mitochondrial membrane potential depolarization, aberrant opening of the mitochondrial permeability transition pore, and structural abnormalities in mitochondria. Therapeutic research demonstrates that vitamin C improves ECs mitochondrial function in diabetic CMD through the TET2-CMPK2 pathway, revealing its potential clinical therapeutic value. In conclusion, we show that loss of endothelial TET2 impairs endothelial mitochondrial function and exacerbated diabetic CMD by regulating the expression of mitochondria enzyme CMPK2.
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