Aims c-jun N-terminal kinase (JNK) is a critical stress response kinase that activates in a wide range of physiological and pathological cellular processes. We recently discovered a pivotal role of JNK in the development of atrial arrhythmias in the aged heart, while cardiac CaMKII delta, another pro-arrhythmic molecule, was also known to enhance atrial arrhythmogenicity. Here, we aimed to reveal a regulatory role of the stress kinase JNK2 isoform on CaMKII delta expression. Methods and results Activated JNK2 leads to increased CaMKII delta protein expression in aged human and mouse atria, evidenced from the reversal of CaMKII delta up-regulation in JNK2 inhibitor treated wild-type aged mice. This JNK2 action in CaMKII delta expression was further confirmed in HL-1 myocytes co-infected with AdMKK7D-JNK2, but not when co-infected with AdMKK7D-JNK1. JNK2-specific inhibition (either by a JNK2 inhibitor or overexpression of inactivated dominant-negative JNK2 (JNK2dn) completely attenuated JNK activator anisomycin-induced v up-regulation in HL-1 myocytes, whereas overexpression of JNK1dn did not. Moreover, up-regulated CaMKII delta mRNA along with substantially increased phosphorylation of JNK downstream transcription factor c-jun [but not activating transcription factor2 (ATF2)] were exhibited in both aged atria (humans and mice) and transiently JNK activated HL-1 myocytes. Cross-linked chromatin-immunoprecipitation assays (XChIP) revealed that both c-jun and ATF2 were bound to the CaMKII delta promoter, but significantly increased binding of c-jun only occurred in the presence of anisomycin and JNK inhibition alleviated this anisomycin-elevated c-jun binding. Mutated CaMKII consensus c-jun binding sites impaired its promoter activity. Enhanced transcriptional activity of CaMKII delta by anisomycin was also completely reversed to the baseline by either JNK2 siRNA or c-jun siRNA knockdown. Conclusion JNK2 activation up-regulates CaMKII delta expression in the aged atrium. This JNK2 regulation in CaMKII delta expression occurs at the transcription level through the JNK downstream transcription factor c-jun. The discovery of this novel molecular mechanism of JNK2-regulated CaMKII expression sheds new light on possible anti-arrhythmia drug development.
基金:
Natural Science Foundation of China [81400257]; American Heart Association [10GRNT3770030]; National Institutes of Health [HL113640, AA024769]
第一作者单位:[1]Loyola Univ Chicago, Dept Cell & Mol Physiol, Maywood, IL 60153 USA
通讯作者:
通讯机构:[1]Loyola Univ Chicago, Dept Cell & Mol Physiol, Maywood, IL 60153 USA[2]Rush Univ, Med Ctr, Dept Physiol & Biophys, Chicago, IL 60612 USA
推荐引用方式(GB/T 7714):
Gao Xianlong,Wu Xiaomin,Yan Jiajie,et al.Transcriptional regulation of stress kinase JNK2 in pro-arrhythmic CaMKIIδ expression in the aged atrium[J].CARDIOVASCULAR RESEARCH.2018,114(5):737-746.doi:10.1093/cvr/cvy011.
APA:
Gao, Xianlong,Wu, Xiaomin,Yan, Jiajie,Zhang, Jingqun,Zhao, Weiwei...&Ai, Xun.(2018).Transcriptional regulation of stress kinase JNK2 in pro-arrhythmic CaMKIIδ expression in the aged atrium.CARDIOVASCULAR RESEARCH,114,(5)
MLA:
Gao, Xianlong,et al."Transcriptional regulation of stress kinase JNK2 in pro-arrhythmic CaMKIIδ expression in the aged atrium".CARDIOVASCULAR RESEARCH 114..5(2018):737-746