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Published on: May 5, 2020
Lactate regulates pathological cardiac hypertrophy via histone lactylation modification
Shuai-Shuai Zhao1, Jinlong Liu2, Qi-Cai Wu1
1Department of Cardiac Surgery, The First Affiliated Hospital, Jiangxi Medical College, Nanchang University, Nanchang, China.
Insights
Histone lysine lactylation (HKla) promotes cardiac hypertrophy by linking metabolism and epigenetics. Inhibiting HKla through lactate or glucose metabolism modulation offers a new therapeutic strategy for heart failure.
Area of Science:
- Cardiovascular Biology
- Epigenetics
- Metabolic Regulation
Background:
- Cardiac hypertrophy and ventricular remodeling are precursors to heart failure.
- Effective therapeutic targets are needed for myocardial hypertrophy.
- Histone lysine lactylation (HKla) is a novel epigenetic modification linking metabolism and gene expression.
Purpose of the Study:
- To investigate the role of HKla in pathological cardiac hypertrophy.
- To determine if HKla modification is a pathogenic factor in cardiac hypertrophy development.
Main Methods:
- Utilized a mouse model of cardiac hypertrophy induced by transverse aortic constriction.
- Examined HKla expression in neonatal mouse cardiomyocytes stimulated with Ang II.
- Investigated the impact of glucose, lactate, and inhibitors (2-DG, oxamate, GNE-140) on HKla and hypertrophy in vitro.
Main Results:
- HKla expression was significantly elevated in cardiomyocytes from hypertrophic models and Ang II-stimulated cells.
- HKla levels were influenced by glucose metabolism and lactate production.
- Exogenous lactate and glucose upregulated HKla and promoted hypertrophy; inhibitors reduced HKla and inhibited hypertrophy.
Conclusions:
- HKla plays a pivotal role in pathological cardiac hypertrophy.
- HKla modification is influenced by cellular metabolic status.
- Targeting HKla offers a potential therapeutic approach for cardiac hypertrophy and heart failure.
Abstract:
Under the long-term pressure overload stimulation, the heart experiences embryonic gene activation, leading to myocardial hypertrophy and ventricular remodelling, which can ultimately result in the development of heart failure. Identifying effective therapeutic targets is crucial for the prevention and treatment of myocardial hypertrophy. Histone lysine lactylation (HKla) is a novel post-translational modification that connects cellular metabolism with epigenetic regulation. However, the specific role of HKla in pathological cardiac hypertrophy remains unclear. Our study aims to investigate whether HKla modification plays a pathogenic role in the development of cardiac hypertrophy. The results demonstrate significant expression of HKla in cardiomyocytes derived from an animal model of cardiac hypertrophy induced by transverse aortic constriction surgery, and in neonatal mouse cardiomyocytes stimulated by Ang II. Furthermore, research indicates that HKla is influenced by glucose metabolism and lactate generation, exhibiting significant phenotypic variability in response to various environmental stimuli. In vitro experiments reveal that exogenous lactate and glucose can upregulate the expression of HKla and promote cardiac hypertrophy. Conversely, inhibition of lactate production using glycolysis inhibitor (2-DG), LDH inhibitor (oxamate) and LDHA inhibitor (GNE-140) reduces HKla levels and inhibits the development of cardiac hypertrophy. Collectively, these findings establish a pivotal role for H3K18la in pathological cardiac hypertrophy, offering a novel target for the treatment of this condition.
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