HADHA in cardiovascular disease: From mitochondrial dysfunction to therapeutic targets
Yichen Qi1, Siyu Guo2, Xinming Cai3
1Department of Cardiology, The First Affiliated Hospital of Sun Yat-Sen University, Guangzhou 510080, China.
None:
HADHA, encoding the α-subunit of MTP, plays a pivotal role in long-chain fatty acid β-oxidation and mitochondrial energy homeostasis. HADHA dysfunction disrupts energy balance by causing toxic metabolite buildup, impairing oxidative phosphorylation, and aberrant cardiolipin remodeling. These disturbances contribute to metabolic dysfunction and the development of cardiovascular diseases. This review summarizes the structural biology, metabolic functions, and regulatory mechanism of HADHA. We further explore its role in cardiac metabolic remodeling, underscoring its involvement in various cardiovascular diseases. In addition, we discuss emerging therapeutic strategies targeting HADHA-related pathways, including molecular interventions and metabolic modulation. By integrating molecular insights with clinical applications, this review highlights HADHA as a promising target in cardiovascular precision medicine and offers new approaches for diagnosing and treating fatty acid oxidation disorders.
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