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Cholesterol 25-hydroxylase prevents type 2 diabetes mellitus induced cardiomyopathy by alleviating cardiac lipotoxicity.
- Source :
-
Biochimica et biophysica acta. Molecular basis of disease [Biochim Biophys Acta Mol Basis Dis] 2024 Jun; Vol. 1870 (5), pp. 167158. Date of Electronic Publication: 2024 Apr 06. - Publication Year :
- 2024
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Abstract
- Objectives: Diabetic cardiomyopathy (DCM) is the leading cause of mortality in type 2 diabetes mellitus (T2DM) patients, with its underlying mechanisms still elusive. This study aims to investigate the role of cholesterol-25-monooxygenase (CH25H) in T2DM induced cardiomyopathy.<br />Methods: High fat diet combined with streptozotocin (HFD/STZ) were used to establish a T2DM model. CH25H and its product 25-hydroxycholesterol (25HC) were detected in the hearts of T2DM model. Gain- or loss-of-function of CH25H were performed by receiving AAV9-cTNT-CH25H or CH25H knockout (CH25H <superscript>-/-</superscript> ) mice with HFD/STZ treatment. Cardiac function was evaluated using echocardiography, and cardiac tissues were collected for immunoblot analysis, histological assessment and quantitative polymerase chain reaction (qPCR). Mitochondrial morphology and function were evaluated using transmission electron microscopy (TEM) and Seahorse XF Cell Mito Stress Test Kit. RNA-sequence analysis was performed to determine the molecular changes associated with CH25H deletion.<br />Results: CH25H and 25HC were significantly decreased in the hearts of T2DM mice. CH25H <superscript>-/-</superscript> mice treated with HFD/STZ exhibited impaired mitochondrial function and structure, increased lipid accumulation, and aggregated cardiac dysfunction. Conversely, T2DM mice receiving AAV9-CH25H displayed cardioprotective effects. Mechanistically, RNA sequencing and qPCR analysis revealed that CH25H deficiency decreased peroxisome proliferator-activated receptor-γ coactivator-1α (PGC-1α) and its target gene expression. Additionally, administration of ZLN005, a potent PGC-1α activator, partially protected against high glucose and palmitic acid induced mitochondria dysfunction and lipid accumulation in vitro.<br />Conclusion: Our study provides compelling evidence supporting the protective role of CH25H in T2DM-induced cardiomyopathy. Furthermore, the regulation of PGC-1α may be intricately involved in this cardioprotective process.<br />Competing Interests: Declaration of competing interest The authors have declared that no competing interest exists.<br /> (Copyright © 2024 Elsevier B.V. All rights reserved.)
- Subjects :
- Animals
Mice
Male
Steroid Hydroxylases metabolism
Steroid Hydroxylases genetics
Diet, High-Fat adverse effects
Mice, Inbred C57BL
Hydroxycholesterols metabolism
Myocardium metabolism
Myocardium pathology
Mitochondria, Heart metabolism
Mitochondria, Heart pathology
Myocytes, Cardiac metabolism
Myocytes, Cardiac pathology
Peroxisome Proliferator-Activated Receptor Gamma Coactivator 1-alpha metabolism
Peroxisome Proliferator-Activated Receptor Gamma Coactivator 1-alpha genetics
Diabetic Cardiomyopathies metabolism
Diabetic Cardiomyopathies pathology
Diabetic Cardiomyopathies prevention & control
Diabetic Cardiomyopathies etiology
Diabetes Mellitus, Type 2 complications
Diabetes Mellitus, Type 2 metabolism
Mice, Knockout
Diabetes Mellitus, Experimental complications
Diabetes Mellitus, Experimental metabolism
Diabetes Mellitus, Experimental pathology
Subjects
Details
- Language :
- English
- ISSN :
- 1879-260X
- Volume :
- 1870
- Issue :
- 5
- Database :
- MEDLINE
- Journal :
- Biochimica et biophysica acta. Molecular basis of disease
- Publication Type :
- Academic Journal
- Accession number :
- 38588780
- Full Text :
- https://doi.org/10.1016/j.bbadis.2024.167158