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Citations to this article

Requirement for Ca2+/calmodulin–dependent kinase II in the transition from pressure overload–induced cardiac hypertrophy to heart failure in mice
Haiyun Ling, … , Donald Bers, Joan Heller Brown
Haiyun Ling, … , Donald Bers, Joan Heller Brown
Published April 20, 2009
Citation Information: J Clin Invest. 2009;119(5):1230-1240. https://doi.org/10.1172/JCI38022.
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Research Article Article has an altmetric score of 7

Requirement for Ca2+/calmodulin–dependent kinase II in the transition from pressure overload–induced cardiac hypertrophy to heart failure in mice

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Abstract

Ca2+/calmodulin–dependent kinase II (CaMKII) has been implicated in cardiac hypertrophy and heart failure. We generated mice in which the predominant cardiac isoform, CaMKIIδ, was genetically deleted (KO mice), and found that these mice showed no gross baseline changes in ventricular structure or function. In WT and KO mice, transverse aortic constriction (TAC) induced comparable increases in relative heart weight, cell size, HDAC5 phosphorylation, and hypertrophic gene expression. Strikingly, while KO mice showed preserved hypertrophy after 6-week TAC, CaMKIIδ deficiency significantly ameliorated phenotypic changes associated with the transition to heart failure, such as chamber dilation, ventricular dysfunction, lung edema, cardiac fibrosis, and apoptosis. The ratio of IP3R2 to ryanodine receptor 2 (RyR2) and the fraction of RyR2 phosphorylated at the CaMKII site increased significantly during development of heart failure in WT mice, but not KO mice, and this was associated with enhanced Ca2+ spark frequency only in WT mice. We suggest that CaMKIIδ contributes to cardiac decompensation by enhancing RyR2-mediated sarcoplasmic reticulum Ca2+ leak and that attenuating CaMKIIδ activation can limit the progression to heart failure.

Authors

Haiyun Ling, Tong Zhang, Laetitia Pereira, Christopher Kable Means, Hongqiang Cheng, Yusu Gu, Nancy D. Dalton, Kirk L. Peterson, Ju Chen, Donald Bers, Joan Heller Brown

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 2013 2012 2011 2010 2009 Total
Citations: 2 8 5 13 11 18 6 16 9 13 15 16 22 18 20 22 7 221
Citation information
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Citations to this article in year 2018 (16)

Title and authors Publication Year
STAT3: A link between CaMKII/βIV-spectrin and maladaptive remodeling?
Mohit Hulsurkar, Ann Quick, Xander H.T. Wehrens
Journal of Clinical Investigation 2018
CaMKII delta-mediated inflammatory gene expression and inflammasome activation in cardiomyocytes initiates inflammation and induces fibrosis
Andrew Willeford, Takeshi Suetomi, Audrey Nickle, Hal Hoffman, Shigeki Miyamoto, Joan Heller Brown
JCI Insight 2018
The Two-Pore-Domain Potassium Channel TREK-1 Mediates Cardiac Fibrosis and Diastolic Dysfunction
Dennis Abraham, Teresa Lee, Lewis J. Watson, Lan Mao, Gurangad S. Chandok, Hong-Gang Wang, Stephan Frangakis, Geoffrey S. Pitt, Svati H. Shah, Matthew, J. Wolf, Howard A. Rockman
Journal of Clinical Investigation 2018
betaIV-spectrin regulates STAT3 targeting to tune cardiac response to pressure overload
Sathya Unudurthi, Drew M Nassal, Amara Greer-Short, Nehal J. Patel, Taylor Howard, Xianyao Xu, Birce Onal, Tony Satroplus, Deborah Y Hong, Cemantha M Lane, Alyssa Dalic, Sara N Koenig, Adam C. Lehnig, Lisa A. Baer, Hassan Musa, Kristin I. Stanford, Sakima A Smith, Peter J. Mohler, Thomas J. Hund
Journal of Clinical Investigation 2018
Physiological and unappreciated roles of CaMKII in the heart
J Beckendorf, MM van den Hoogenhof, J Backs
Basic Research in Cardiology 2018
Altered Ca2+ and Na+ Homeostasis in Human Hypertrophic Cardiomyopathy: Implications for Arrhythmogenesis
R Coppini, C Ferrantini, A Mugelli, C Poggesi, E Cerbai
Frontiers in physiology 2018
Quantitative systems models illuminate arrhythmia mechanisms in heart failure: Role of the Na + -Ca 2+ -Ca 2+ /calmodulin-dependent protein kinase II-reactive oxygen species feedback
S Morotti, E Grandi
Wiley interdisciplinary reviews. Systems biology and medicine 2018
Nuclear translocation of calmodulin in pathological cardiac hypertrophy originates from ryanodine receptor bound calmodulin
T Oda, T Yamamoto, T Kato, H Uchinoumi, G Fukui, Y Hamada, T Nanno, H Ishiguchi, Y Nakamura, Y Okamoto, M Kono, S Okuda, S Kobayashi, DM Bers, M Yano
Journal of Molecular and Cellular Cardiology 2018
Programmed necrosis in cardiomyocytes: mitochondria, death receptors and beyond
J Zhang, D Liu, M Zhang, Y Zhang
British Journal of Pharmacology 2018
Caveolae-Specific CaMKII Signaling in the Regulation of Voltage-Dependent Calcium Channel and Cardiac Hypertrophy
S Tanaka, Y Fujio, H Nakayama
Frontiers in physiology 2018
Inflammation and NLRP3 Inflammasome Activation Initiated in Response to Pressure Overload by Ca 2+ /Calmodulin-Dependent Protein Kinase II δ Signaling in Cardiomyocytes Are Essential for Adverse Cardiac Remodeling
T Suetomi, A Willeford, CS Brand, Y Cho, RS Ross, S Miyamoto, JH Brown
Circulation 2018
Ivabradine improved left ventricular function and pressure overload-induced cardiomyocyte apoptosis in a transverse aortic constriction mouse model
Y Yu, Z Hu, B Li, Z Wang, S Chen
Molecular and Cellular Biochemistry 2018
Novel Mechanistic Roles for Ankyrin-G in Cardiac Remodeling and Heart Failure
MA Makara, J Curran, ER Lubbers, NP Murphy, SC Little, H Musa, SA Smith, SD Unudurthi, MV Rajaram, PM Janssen, PA Boyden, EA Bradley, TJ Hund, PJ Mohler
JACC: Basic to Translational Science 2018
A secretory pathway kinase regulates sarcoplasmic reticulum Ca2+ homeostasis and protects against heart failure
AJ Pollak, C Liu, A Gudlur, JE Mayfield, ND Dalton, Y Gu, J Chen, JH Brown, PG Hogan, SE Wiley, KL Peterson, JE Dixon
eLife 2018
“TRPV1 is a component of the atrial natriuretic signaling complex, and using orally delivered antagonists, presents a valid therapeutic target in the longitudinal reversal and treatment of cardiac hypertrophy and heart failure”
JS Horton, T Shiraishi, N Alfulaij, AL Small-Howard, HC Turner, T Kurokawa, Y Mori, AJ Stokes
Channels (Austin, Tex.) 2018
抑制CaMKⅡ减轻线粒体氧化应激可改善离体心脏缺血再灌注损伤
2018

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