Correlation Engine 2.0
Clear Search sequence regions


  • arrhythmias cardiac (1)
  • Atp2a2 (1)
  • atpases (2)
  • Ca2 (22)
  • calcium (4)
  • calmodulin (3)
  • CaMKII (7)
  • dependent (5)
  • hearts (3)
  • humans (1)
  • isoform (4)
  • JNK1 (1)
  • JNK2 (17)
  • mice (3)
  • mitogen (2)
  • rabbits (1)
  • receptor 2 (2)
  • receptor calcium (2)
  • reticulum (18)
  • RyR2 (2)
  • SERCA2 (8)
  • Sizes of these terms reflect their relevance to your search.

    We recently discovered pivotal contributions of stress kinase JNK2 (c-Jun N-terminal kinase isoform 2) in increased risk of atrial fibrillation through enhanced diastolic sarcoplasmic reticulum (SR) calcium (Ca2+) leak via RyR2 (ryanodine receptor isoform 2). However, the role of JNK2 in the function of the SERCA2 (SR Ca2+-ATPase), essential in maintaining SR Ca2+ content cycling during each heartbeat, is completely unknown. To test the hypothesis that JNK2 increases SERCA2 activity SR Ca2+ content and exacerbates an arrhythmic SR Ca2+ content leak-load relationship. We used confocal Ca2+ imaging in myocytes and HEK-RyR2 (ryanodine receptor isoform 2-expressing human embryonic kidney 293 cells) cells, biochemistry, dual Ca2+/voltage optical mapping in intact hearts from alcohol-exposed or aged mice (where JNK2 is activated). We found that JNK2, but not JNK1 (c-Jun N-terminal kinase isoform 1), increased SERCA2 uptake and consequently elevated SR Ca2+ content load. JNK2 also associates with and phosphorylates SERCA2 proteins. JNK2 causally enhances SERCA2-ATPase activity via increased maximal rate, without altering Ca2+ affinity. Unlike the CaMKII (Ca2+/calmodulin-dependent kinase II)-dependent JNK2 action in SR Ca2+ leak, JNK2-driven SERCA2 function was CaMKII independent (not prevented by CaMKII inhibition). With CaMKII blocked, the JNK2-driven SR Ca2+ loading alone did not significantly raise leak. However, with JNK2-CaMKII-driven SR Ca2+ leak present, the JNK2-enhanced SR Ca2+ uptake limited leak-induced reduction in SR Ca2+, normalizing Ca2+ transient amplitude, but at a higher arrhythmogenic SR Ca2+ leak. JNK2-specific inhibition completely normalized SR Ca2+ handling, attenuated arrhythmic Ca2+ activities, and alleviated atrial fibrillation susceptibility in aged and alcohol-exposed myocytes and intact hearts. We have identified a novel JNK2-induced activation of SERCA2. The dual action of JNK2 in CaMKII-dependent arrhythmic SR Ca2+ leak and a CaMKII-independent uptake exacerbates atrial arrhythmogenicity, while helping to maintain normal levels of Ca2+ transients and heart function. JNK2 modulation may be a novel therapeutic target for atrial fibrillation prevention and treatment.

    Citation

    Jiajie Yan, Dan J Bare, Jaime DeSantiago, Weiwei Zhao, Yiming Mei, Zhenhui Chen, Kenneth Ginsburg, R John Solaro, Beata M Wolska, Donald M Bers, S R Wayne Chen, Xun Ai. JNK2, a Newly-Identified SERCA2 Enhancer, Augments an Arrhythmic [Ca2+]SR Leak-Load Relationship. Circulation research. 2021 Feb 19;128(4):455-470

    Expand section icon Mesh Tags

    Expand section icon Substances


    PMID: 33334123

    View Full Text