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MicroRNA let-7-TGFBR3 signalling regulates cardiomyocyte apoptosis after infarction
Chen-Yun Chen1, Oi Kuan Choong1, Li-Wei Liu1
1Institute of Biomedical Science, Academia Sinica, Taipei, Taiwan.
Background:
Myocardial infarction (MI) is a life-threatening disease, often leading to heart failure. Defining therapeutic targets at an early time point is important to prevent heart failure.
Methods:
MicroRNA screening was performed at early time points after MI using paired samples isolated from the infarcted and remote myocardium of pigs. We also examined the microRNA expression in plasma of MI patients and pigs. For mechanistic studies, AAV9-mediated microRNA knockdown and overexpression were administrated in mice undergoing MI.
Findings:
MicroRNAs let-7a and let-7f were significantly downregulated in the infarct area within 24 h post-MI in pigs. We also observed a reduction of let-7a and let-7f in plasma of MI patients and pigs. Inhibition of let-7 exacerbated cardiomyocyte apoptosis, induced a cardiac hypertrophic phenotype, and resulted in worsened left ventricular ejection fraction. In contrast, ectopic let-7 overexpression significantly reduced those phenotypes and improved heart function. We then identified TGFBR3 as a target of let-7, and found that induction of Tgfbr3 in cardiomyocytes caused apoptosis, likely through p38 MAPK activation. Finally, we showed that the plasma TGFBR3 level was elevated after MI in plasma of MI patients and pigs.
Interpretation:
Together, we conclude that the let-7-Tgfbr3-p38 MAPK signalling plays an important role in cardiomyocyte apoptosis after MI. Furthermore, microRNA let-7 and Tgfbr3 may serve as therapeutic targets and biomarkers for myocardial damage. FUND: Ministry of Science and Technology, National Health Research Institutes, Academia Sinica Program for Translational Innovation of Biopharmaceutical Development-Technology Supporting Platform Axis, Thematic Research Program and the Summit Research Program, Taiwan.
Insights
MicroRNA let-7a and let-7f are reduced after myocardial infarction (MI), worsening heart function. Restoring let-7 levels may protect against heart damage and serve as a therapeutic target.
Area of Science:
- Cardiovascular Research
- Molecular Biology
- Biomarker Discovery
Background:
- Myocardial infarction (MI) is a critical condition often leading to heart failure.
- Early identification of therapeutic targets is crucial for preventing post-MI heart failure.
Purpose of the Study:
- To investigate the role of microRNAs in early myocardial infarction.
- To identify potential therapeutic targets and biomarkers for myocardial damage.
Main Methods:
- MicroRNA expression profiling in pig and human plasma post-MI.
- In vivo studies using AAV9-mediated microRNA modulation in mice.
- Identification of microRNA targets and signaling pathways involved in cardiomyocyte apoptosis.
Main Results:
- let-7a and let-7f were significantly downregulated in infarcted myocardium and plasma post-MI.
- let-7 inhibition exacerbated cardiomyocyte apoptosis and cardiac dysfunction.
- let-7 overexpression improved cardiac function and reduced adverse phenotypes.
- TGFBR3 was identified as a direct target of let-7, mediating apoptosis via p38 MAPK signaling.
Conclusions:
- The let-7-Tgfbr3-p38 MAPK signaling pathway is pivotal in cardiomyocyte apoptosis following MI.
- MicroRNA let-7 and TGFBR3 show potential as therapeutic targets and biomarkers for myocardial damage.
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