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A Slc5a6-deficient mouse model reveals metabolically driven cardiomyopathy with therapeutic potential for vitamin-based intervention
Millie O. Fullerton, Lauren C. Phillips, Rachael E. Redgrave, Luke Spray, Vincent Haufroid, George Merces, Scott T. Kerridge, Gavin D. Richardson, Nathalie Mercier, Dominique Roland, Rebecca Crossley, Andrew D.H. Morgan, Joseph P. Dewulf, John Burn, Simon D. Bamforth, Helen M. Phillips
Millie O. Fullerton, Lauren C. Phillips, Rachael E. Redgrave, Luke Spray, Vincent Haufroid, George Merces, Scott T. Kerridge, Gavin D. Richardson, Nathalie Mercier, Dominique Roland, Rebecca Crossley, Andrew D.H. Morgan, Joseph P. Dewulf, John Burn, Simon D. Bamforth, Helen M. Phillips
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Research Article Cardiology Metabolism

A Slc5a6-deficient mouse model reveals metabolically driven cardiomyopathy with therapeutic potential for vitamin-based intervention

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Abstract

The sodium-dependent multivitamin transporter, encoded by SLC5A6, mediates cellular uptake of biotin and pantothenic acid, essential cofactors for energy metabolism. We identified 2 families with SLC5A6 mutations presenting with early-onset dilated cardiomyopathy (DCM). To investigate the link between vitamin deficiency and cardiomyopathy, we generated a cardiac-specific SLC5A6-knockout (Slc5a6cKO) mouse model and evaluated the impact of vitamin supplementation. Slc5a6cKO mice developed progressive cardiac dysfunction, culminating in cardiac pathology and premature death at 26 weeks; earlier stages exhibited cardiomyocyte hypertrophy, fibrosis, impaired coenzyme A synthesis, and metabolic imbalance, indicating progression toward cardiomyopathy. Cardiac magnetic resonance imaging and ECG confirmed progressive functional decline. Proteomic analysis revealed early mitochondrial metabolic disruption and extracellular matrix protein upregulation at 8 weeks, preceding overt cardiac dysfunction. Strikingly, vitamin supplementation from preconception onwards prevented the cardiac phenotype, preserving cardiac structure, function, morphology and survival. This paralleled the clinical outcome in one patient who received early vitamin treatment, compared with another who required a heart transplant without vitamin treatment. This study establishes a direct link between SLC5A6-mediated vitamin transport, mitochondrial function, and cardiac health. It highlights how vitamin deficiency contributes to cardiomyopathy pathogenesis and supports early vitamin supplementation as a potential therapeutic strategy for metabolic cardiomyopathies.

Authors

Millie O. Fullerton, Lauren C. Phillips, Rachael E. Redgrave, Luke Spray, Vincent Haufroid, George Merces, Scott T. Kerridge, Gavin D. Richardson, Nathalie Mercier, Dominique Roland, Rebecca Crossley, Andrew D.H. Morgan, Joseph P. Dewulf, John Burn, Simon D. Bamforth, Helen M. Phillips

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Figure 1

Clinical presentation and identification of the SLC5A6R253W mutation.

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Clinical presentation and identification of the SLC5A6R253W mutation.
(A...
(A) Pedigree of Family 1. The unaffected consanguineous parents and child II-3 were heterozygous for the SLC5A6 mutation (C/T) in R253, whereas children II-1 and II-2 both had DCM and were homozygous (T/T). (B) X-ray of child II-2 from Family 1, with a cardiothoracic ratio of 0.57, indicating an enlarged heart. (C–H) Imaging of a left ventricular heart biopsy from child II-2. (C and D) H&E-stained sections showed myocardial disarray with hypertrophied cardiomyocytes (black arrowheads), hyperchromatic nuclei (green arrowheads), and myofibrillar loss (blue arrowheads). (E–H) Sarcomeric wasting (black arrow in E), sarcomeric disarray (blue arrow in E), Z band disarray (black arrowheads in E), fragmented mitochondria (black arrowheads in F and G), and mitochondrial degradation (red arrowheads in F and H). (I) Pedigree of Family 2. The unaffected consanguineous parents were heterozygous for the SLC5A6 mutation (C/T) in P437, whereas Patient II-5 had DCM and was homozygous (T/T). Child II-2 died at 8 months from heart failure, but no genetic testing had been performed. (J) Timeline and treatment of Patient II-5 from Family 2. The ejection fraction (EF, blue line) and the administration of up to 5 cardiac drugs (gray histogram) at different time points are shown. The first day of admission to hospital is classified as day 0. The cardiac drugs were stopped on day 148 when the EF became stabilized. Vitamin treatment with biotin and pantothenic acid (PA) is ongoing, and the EF continues to be stabilized. (K) Amino acid residues R253 and P437 are both highly conserved across species. (L) Schematic of SMVT. The patient mutation, p.R253W (Family 1), is in the hinge region of the transporter and the p.P437L mutation (Family 2) is located within transmembrane domain 11. Scale bars: 20 μm (C and D), 2 μm (E), and 500 nm (F–H).

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