MicroRNA-26 governs profibrillatory inward-rectifier potassium current changes in atrial fibrillation

Atrial fibrillation (AF) is a highly prevalent arrhythmia with pronounced morbidity and mortality. Inward-rectifier K+ current (IK1) is believed to be an important regulator of reentrant-spiral dynamics and a major component of AF-related electrical remodeling. MicroRNA-26 (miR-26) is predicted to t...

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Veröffentlicht in:The Journal of clinical investigation 2013-05, Vol.123 (5), p.1939-1951
Hauptverfasser: Luo, Xiaobin, Pan, Zhenwei, Shan, Hongli, Xiao, Jiening, Sun, Xuelin, Wang, Ning, Lin, Huixian, Xiao, Ling, Maguy, Ange, Qi, Xiao-Yan, Li, Yue, Gao, Xu, Dong, Deli, Zhang, Yong, Bai, Yunlong, Ai, Jing, Sun, Lihua, Lu, Hang, Luo, Xiao-Yan, Wang, Zhiguo, Lu, Yanjie, Yang, Baofeng, Nattel, Stanley
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Sprache:eng
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Zusammenfassung:Atrial fibrillation (AF) is a highly prevalent arrhythmia with pronounced morbidity and mortality. Inward-rectifier K+ current (IK1) is believed to be an important regulator of reentrant-spiral dynamics and a major component of AF-related electrical remodeling. MicroRNA-26 (miR-26) is predicted to target the gene encoding KIR2.1, KCNJ2. We found that miR-26 was downregulated in atrial samples from AF animals and patients and this downregulation was accompanied by upregulation of IK1/KIR2.1 protein. miR-26 overexpression suppressed expression of KCNJ2/KIR2.1. In contrast, miR-26 knockdown, inhibition, or binding-site mutation enhanced KCNJ2/KIR2.1 expression, establishing KCNJ2 as a miR-26 target. Knockdown of endogenous miR-26 promoted AF in mice, whereas adenovirus-mediated expression of miR-26 reduced AF vulnerability. Kcnj2-specific miR-masks eliminated miR-26-mediated reductions in Kcnj2, abolishing miR-26's protective effects, while coinjection of a Kcnj2-specific miR-mimic prevented miR-26 knockdown-associated AF in mice. Nuclear factor of activated T cells (NFAT), a known actor in AF-associated remodeling, was found to negatively regulate miR-26 transcription. Our results demonstrate that miR-26 controls the expression of KCNJ2 and suggest that this downregulation may promote AF.
ISSN:0021-9738
1558-8238
DOI:10.1172/jci62185