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Updated: Apr 1, 2026

Author Spotlight: Exploring the Relationship Between Lipotoxicity and HFpEF
Published on: March 29, 2024
Amplification of lipotoxic cardiomyopathy in the VDR gene knockout mouse
Denis J Glenn1, Michelle C Cardema1, David G Gardner1
1Diabetes Center, 1109 HSW, University of California San Francisco, San Francisco, CA 94143-0540, United States.
Abstract:
Previous studies demonstrated that the liganded vitamin D receptor (VDR) plays an important role in controlling cardiovascular homeostasis. Both the whole animal VDR gene knockout (VDR-/-) and the myocyte-specific VDR gene deletion result in changes in cardiac structure and function. Clinical states associated with cardiac steatosis (obesity and diabetes mellitus) are also associated with low circulating 25 OH vitamin D levels. We, therefore, examined the effects of VDR deficiency (VDR-/- mouse) in a murine model of cardiac steatosis that expresses the terminal enzyme involved in triglyceride synthesis, diacylglycerol acyltransferase 1 (DGAT1), selectively in the cardiac myocyte. These mice display early cardiac dysfunction and late cardiomyopathy and heart failure. In the present study, we demonstrate that mice harboring both genetic modifications (i.e., MHC-DGAT1 Tg and VDR-/-) exhibit an increase in myocyte size, heart weight/body weight ratio and natriuretic peptide gene expression, all markers of cardiac hypertrophy, that exceed that seen in either VDR-/- or the MHC-DGAT1 Tg mice alone. This was accompanied by a dramatic increase in interstitial fibrosis and increased expression of collagen 1a1 and collagen 3a1, as well as the osteopontin and matrix metalloproteinase 2, genes. At a functional level, this resulted in a 37% reduction in ejection fraction and 55% reduction in fractional shortening in the DGAT1; VDR-/- mice relative to the controls. Collectively, these data demonstrate that deficiency in the vitamin D signaling system enhances the pathological phenotype in this experimental cardiomyopathy and suggest an important role for vitamin D in modulating disease severity in common cardiovascular disorders.
Insights
Vitamin D receptor (VDR) deficiency worsens cardiac steatosis and heart failure in mice. VDR deficiency exacerbates cardiac hypertrophy, fibrosis, and reduces heart function, highlighting vitamin D
Area of Science:
- Cardiovascular Biology
- Endocrinology
- Molecular Cardiology
Background:
- The vitamin D receptor (VDR) is crucial for cardiovascular homeostasis.
- VDR deficiency and cardiac steatosis are linked to heart dysfunction.
- Cardiac steatosis involves diacylglycerol acyltransferase 1 (DGAT1) in myocytes.
Purpose of the Study:
- To investigate the combined effects of VDR deficiency and cardiac DGAT1 expression on heart function.
- To determine if VDR deficiency exacerbates a murine model of cardiac steatosis.
Main Methods:
- Utilized a VDR knockout (VDR-/-) mouse model.
- Generated transgenic mice with cardiac myocyte-specific DGAT1 expression (MHC-DGAT1 Tg).
- Created double-mutant mice (DGAT1; VDR-/-) to assess combined genetic effects.
Main Results:
- Double-mutant mice showed increased cardiac hypertrophy markers (myocyte size, heart weight/body weight ratio, natriuretic peptide expression).
- Significant increases in interstitial fibrosis and collagen gene expression (collagen 1a1, 3a1) were observed.
- DGAT1; VDR-/- mice exhibited a marked reduction in ejection fraction (37%) and fractional shortening (55%).
Conclusions:
- VDR deficiency significantly worsens the pathological phenotype in experimental cardiac steatosis.
- Vitamin D signaling plays a critical role in modulating disease severity in cardiovascular disorders.
- These findings suggest therapeutic potential for vitamin D in managing heart conditions associated with steatosis.

