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Endothelial Bmx tyrosine kinase activity is essential for myocardial hypertrophy and remodeling
Tanja Holopainen1, Markus Räsänen1, Andrey Anisimov1
1Wihuri Research Institute and Translational Cancer Biology Program, Biomedicum Helsinki, University of Helsinki, FI-00290 Helsinki, Finland;
Insights
Inhibiting bone marrow kinase (Bmx) tyrosine kinase activity significantly reduces cardiac hypertrophy. This suggests targeting endothelial Bmx may prevent heart disease development.
Area of Science:
- Cardiovascular Biology
- Molecular Cardiology
- Biochemistry
Background:
- Cardiac hypertrophy is a major risk factor for cardiovascular morbidity and mortality.
- Bone marrow kinase (Bmx) is a tyrosine kinase implicated in cardiovascular disease.
- Previous studies suggested Bmx deletion inhibits cardiac hypertrophy in mice.
Purpose of the Study:
- To investigate the role of Bmx tyrosine kinase in angiotensin II (Ang II)-induced cardiac hypertrophy.
- To explore the therapeutic potential of inhibiting Bmx activity for treating cardiac hypertrophy.
Main Methods:
- Gene-targeted mice with Bmx deficiency or inactivated Bmx tyrosine kinase were used.
- Genome-wide transcriptomic profiling was performed to analyze gene expression changes.
- Human cardiomyocytes and cardiac endothelial cells were used to study Bmx expression and signaling.
Main Results:
- Ang II-induced cardiac hypertrophy was significantly reduced in Bmx-deficient mice.
- Bmx inactivation suppressed inflammatory and extracellular matrix gene expression in response to Ang II.
- Endothelial Bmx phosphorylation and STAT3 signaling were observed upon Ang II stimulation, inhibited by Bmx gene silencing.
- Mechanistic target of rapamycin complex 1 (mTORC1) pathway activation was decreased in Bmx-deficient hearts.
Conclusions:
- Endothelial Bmx tyrosine kinase plays a critical role in mediating Ang II-induced cardiac hypertrophy.
- Inhibiting endothelial Bmx suppresses the cross-talk between endothelial cells and cardiomyocytes, attenuating cardiac hypertrophy.
- Endothelial Bmx represents a potential therapeutic target for preventing cardiac hypertrophy and related cardiovascular diseases.
Abstract:
Cardiac hypertrophy accompanies many forms of heart disease, including ischemic disease, hypertension, heart failure, and valvular disease, and it is a strong predictor of increased cardiovascular morbidity and mortality. Deletion of bone marrow kinase in chromosome X (Bmx), an arterial nonreceptor tyrosine kinase, has been shown to inhibit cardiac hypertrophy in mice. This finding raised the possibility of therapeutic use of Bmx tyrosine kinase inhibitors, which we have addressed here by analyzing cardiac hypertrophy in gene-targeted mice deficient in Bmx tyrosine kinase activity. We found that angiotensin II (Ang II)-induced cardiac hypertrophy is significantly reduced in mice deficient in Bmx and in mice with inactivated Bmx tyrosine kinase compared with WT mice. Genome-wide transcriptomic profiling showed that Bmx inactivation suppresses myocardial expression of genes related to Ang II-induced inflammatory and extracellular matrix responses whereas expression of RNAs encoding mitochondrial proteins after Ang II administration was maintained in Bmx-inactivated hearts. Very little or no Bmx mRNA was expressed in human cardiomyocytes whereas human cardiac endothelial cells expressed abundant amounts. Ang II stimulation of endothelial cells increased Bmx phosphorylation, and Bmx gene silencing inhibited downstream STAT3 signaling, which has been implicated in cardiac hypertrophy. Furthermore, activation of the mechanistic target of rapamycin complex 1 pathway by Ang II treatment was decreased in the Bmx-deficient hearts. Our results demonstrate that inhibition of the cross-talk between endothelial cells and cardiomyocytes by Bmx inactivation suppresses Ang II-induced signals for cardiac hypertrophy. These results suggest that the endothelial Bmx tyrosine kinase could provide a target to attenuate the development of cardiac hypertrophy.
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