糖尿病性心肌病
基因敲除
上睑下垂
内科学
医学
调节器
心肌病
内分泌学
纤维化
心力衰竭
心脏纤维化
内生
心脏功能不全
细胞凋亡
细胞生物学
化学
生物
炎症体
炎症
基因
生物化学
作者
Qiong Yuan,Yunwei Sun,Fan Yang,Dan Yan,Mei-Hua Shen,Zhigang Jin,Lin Zhan,Guangqi Liu,Ling Yang,Qianyi Zhou,Zhijun Yu,Xiangyu Zhou,Yang Yu,Yong Xu,Qingming Wu,Jianfang Luo,Xiamin Hu,Chunxiang Zhang
标识
DOI:10.1038/s41392-022-01306-2
摘要
Abstract In this study, we identified that a conserved circular RNA (circRNA) DICAR, which was downregulated in diabetic mouse hearts. DICAR had an inhibitory effect on diabetic cardiomyopathy (DCM), as the spontaneous cardiac dysfunction, cardiac cell hypertrophy, and cardiac fibrosis occurred in DICAR deficiency ( DICAR +/− ) mice, whereas the DCM was alleviated in DICAR-overexpressed DICAR Tg mice. At the cellular level, we found that overexpression of DICAR inhibited, but knockdown of DICAR enhanced the diabetic cardiomyocyte pyroptosis. At the molecular level, we identified that DICAR-VCP-Med12 degradation could be the underlying molecular mechanism in DICAR-mediated effects. The synthesized DICAR junction part (DICAR-JP) exhibited a similar effect to the entire DICAR. In addition, the expression of DICAR in circulating blood cells and plasma from diabetic patients was lower than that from health controls, which was consistent with the decreased DICAR expression in diabetic hearts. DICAR and the synthesized DICAR-JP may be drug candidates for DCM.
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