PKM1 Exerts Critical Roles in Cardiac Remodeling Under Pressure Overload in the Heart

التفاصيل البيبلوغرافية
العنوان: PKM1 Exerts Critical Roles in Cardiac Remodeling Under Pressure Overload in the Heart
المؤلفون: Craig R. Malloy, Xiang Luo, Charles D. Smart, Jun Lin, Lin Tan, Yu An, Philipp E. Scherer, Qinfeng Li, Chongshan Dai, Luke I. Szweda, Guihao Chen, Thomas G. Gillette, Guangyu Zhang, Meihui Wang, Yingfeng Deng, Shangang Zhao, Guosheng Fu, Gaurav Sharma, Yingchao Gong, Jason W. Locasale, Chao Li, Zhao V. Wang, Shawn M. Davidson, Waleed M. Elhelaly, Philip L. Lorenzi, Abdallah Elnwasany, Matthew G. Vander Heiden, Juan Liu, Shuang Jie Lv
المصدر: Circulation
سنة النشر: 2021
مصطلحات موضوعية: 0301 basic medicine, medicine.medical_specialty, Glucose utilization, Thyroid Hormones, Cell Respiration, Gene Expression, 030204 cardiovascular system & hematology, Models, Biological, Article, 03 medical and health sciences, Mice, 0302 clinical medicine, Physiology (medical), Internal medicine, medicine, Animals, Humans, Glycolysis, Myocytes, Cardiac, Hemodynamic stress, Pressure overload, Heart Failure, Mice, Knockout, Ventricular Remodeling, business.industry, Membrane Proteins, medicine.disease, Pyruvate dehydrogenase complex, Mitochondria, Enzyme Activation, Disease Models, Animal, 030104 developmental biology, Glucose, Heart failure, Heart Function Tests, Cardiology, Disease Progression, Disease Susceptibility, Cardiology and Cardiovascular Medicine, business, Carrier Proteins, Pyruvate kinase, Biomarkers
الوصف: Background: Metabolic remodeling precedes most alterations during cardiac hypertrophic growth under hemodynamic stress. The elevation of glucose utilization has been recognized as a hallmark of metabolic remodeling. However, its role in cardiac hypertrophic growth and heart failure in response to pressure overload remains to be fully illustrated. Here, we aimed to dissect the role of cardiac PKM1 (pyruvate kinase muscle isozyme 1) in glucose metabolic regulation and cardiac response under pressure overload. Methods: Cardiac-specific deletion of PKM1 was achieved by crossing the floxed PKM1 mouse model with the cardiomyocyte-specific Cre transgenic mouse. PKM1 transgenic mice were generated under the control of tetracycline response elements, and cardiac-specific overexpression of PKM1 was induced by doxycycline administration in adult mice. Pressure overload was triggered by transverse aortic constriction. Primary neonatal rat ventricular myocytes were used to dissect molecular mechanisms. Moreover, metabolomics and nuclear magnetic resonance spectroscopy analyses were conducted to determine cardiac metabolic flux in response to pressure overload. Results: We found that PKM1 expression is reduced in failing human and mouse hearts. It is important to note that cardiomyocyte-specific deletion of PKM1 exacerbates cardiac dysfunction and fibrosis in response to pressure overload. Inducible overexpression of PKM1 in cardiomyocytes protects the heart against transverse aortic constriction–induced cardiomyopathy and heart failure. At the mechanistic level, PKM1 is required for the augmentation of glycolytic flux, mitochondrial respiration, and ATP production under pressure overload. Furthermore, deficiency of PKM1 causes a defect in cardiomyocyte growth and a decrease in pyruvate dehydrogenase complex activity at both in vitro and in vivo levels. Conclusions: These findings suggest that PKM1 plays an essential role in maintaining a homeostatic response in the heart under hemodynamic stress.
تدمد: 1524-4539
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::31df6c19c6fb338b61629372b20d1bc0
https://pubmed.ncbi.nlm.nih.gov/34102853
حقوق: OPEN
رقم الأكسشن: edsair.doi.dedup.....31df6c19c6fb338b61629372b20d1bc0
قاعدة البيانات: OpenAIRE