Cardiomyocyte Homeodomain-Interacting Protein Kinase 2 Maintains Basal Cardiac Function via Extracellular Signal-Regulated Kinase Signaling

被引:26
作者
Guo, Yuanjun [1 ,3 ]
Sui, Jennifer Y. [1 ]
Kim, Kyungsoo [2 ]
Zhang, Zhentao [1 ,4 ,5 ]
Qu, Xiaoyan A. [6 ]
Nam, Young-Jae [1 ,4 ,5 ]
Willette, Robert N. [7 ]
Barnett, Joey V. [3 ]
Knollmann, Bjorn C. [2 ]
Force, Thomas [1 ]
Lal, Hind [1 ,8 ]
机构
[1] Vanderbilt Univ, Med Ctr, Div Cardiovasc Med, Nashville, TN USA
[2] Vanderbilt Univ, Med Ctr, Div Clin Pharmacol, Nashville, TN USA
[3] Vanderbilt Univ, Sch Med, Dept Pharmacol, Nashville, TN 37212 USA
[4] Vanderbilt Univ, Dept Cell & Dev Biol, 221 Kirkland Hall, Nashville, TN 37235 USA
[5] Vanderbilt Univ, Vanderbilt Ctr Stem Cell Biol, 221 Kirkland Hall, Nashville, TN 37235 USA
[6] PAREXEL Int, Res Triangle Pk, NC USA
[7] GlaxoSmithKline, Metab Pathways & Cardiovasc Therapeut Area, Heart Failure Discovery Performance Unit, King Of Prussia, PA USA
[8] Univ Alabama Birmingham, Div Cardiovasc Dis, 1720 2nd Ave South, Birmingham, AL 35294 USA
基金
美国国家卫生研究院;
关键词
heart failure; HIPK2; protein; mouse; MAP kinase signaling system; HIPK2; EXPRESSION; GROWTH; ACTIVATION; CELLS; P53; MECHANISMS; APOPTOSIS; KINOME; ROLES;
D O I
10.1161/CIRCULATIONAHA.119.040740
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
BACKGROUND: Cardiac kinases play a critical role in the development of heart failure, and represent potential tractable therapeutic targets. However, only a very small fraction of the cardiac kinome has been investigated. To identify novel cardiac kinases involved in heart failure, we used an integrated transcriptomics and bioinformatics analysis and identified Homeodomain-Interacting Protein Kinase 2 (HIPK2) as a novel candidate kinase. The role of HIPK2 in cardiac biology is unknown. METHODS: We used the Expression2Kinase algorithm for the screening of kinase targets. To determine the role of HIPK2 in the heart, we generated cardiomyocyte (CM)-specific HIPK2 knockout and heterozygous mice. Heart function was examined by echocardiography, and related cellular and molecular mechanisms were examined. Adeno-associated virus serotype 9 carrying cardiac-specific constitutively active MEK1 (TnT-MEK1-CA) was administrated to rescue cardiac dysfunction in CM-HIPK2 knockout mice. RESULTS: To our knowledge, this is the first study to define the role of HIPK2 in cardiac biology. Using multiple HIPK2 loss-of-function mouse models, we demonstrated that reduction of HIPK2 in CMs leads to cardiac dysfunction, suggesting a causal role in heart failure. It is important to note that cardiac dysfunction in HIPK2 knockout mice developed with advancing age, but not during development. In addition, CM-HIPK2 knockout mice and CM-HIPK2 heterozygous mice exhibited a gene dose-response relationship of CM-HIPK2 on heart function. HIPK2 expression in the heart was significantly reduced in human end-stage ischemic cardiomyopathy in comparison to nonfailing myocardium, suggesting a clinical relevance of HIPK2 in cardiac biology. In vitro studies with neonatal rat ventricular CMscorroborated the in vivo findings. Specifically, adenovirus-mediated overexpression of HIPK2 suppressed the expression of heart failure markers, NPPA and NPPB, at basal condition and abolished phenylephrine-induced pathological gene expression. An array of mechanistic studies revealed impaired extracellular signal-regulated kinase 1/2 signaling in HIPK2-deficient hearts. An in vivo rescue experiment with adeno-associated virus serotype 9 TnT-MEK1-CA nearly abolished the detrimental phenotype of knockout mice, suggesting that impaired extracellular signal-regulated kinase signaling mediated apoptosis as the key factor driving the detrimental phenotype in CM-HIPK2 knockout mice hearts. CONCLUSIONS: Taken together, these findings suggest that CM-HIPK2 is required to maintain normal cardiac function via extracellular signal-regulated kinase signaling.
引用
收藏
页码:1820 / 1833
页数:14
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