Cholecalciferol affects cardiac proteins regulating malonyl-CoA availability and intracellular calcium level

Cholecalciferol improves insulin signaling and glucose metabolism in the heart and reduces circulating non-esterified fatty acids. Cholecalciferol effects on the cardiac fatty acid (FA) metabolism and the consequences on calcium handling were examined. Blood lipid profile was determined. Western blo...

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Veröffentlicht in:General physiology and biophysics 2023-01, Vol.42 (3), p.241-250
Hauptverfasser: Ivkovic, Tamara, Tepavcevic, Snezana, Romic, Snjezana, Stojiljkovic, Mojca, Kostic, Milan, Stanisic, Jelena, Koricanac, Goran, Culafic, Tijana
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Sprache:eng
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Zusammenfassung:Cholecalciferol improves insulin signaling and glucose metabolism in the heart and reduces circulating non-esterified fatty acids. Cholecalciferol effects on the cardiac fatty acid (FA) metabolism and the consequences on calcium handling were examined. Blood lipid profile was determined. Western blot and qRT-PCR were used to examine protein and mRNA expression. Cholecalciferoltreated rats had increased acetyl CoA carboxylase 2 protein expression and decreased expression of malonyl CoA decarboxylase. In addition, the expression of uncoupling protein 3 was elevated. Also, the level of peroxisome proliferator-activated receptor-gamma coactivator in the nucleus of heart cells was increased along with the level of sarcoplasmic/endoplasmic reticulum Ca2+ATPase in the microsomal fraction. In parallel, the L-type calcium channel and ryanodine receptor expression was reduced. In the heart of healthy rats, cholecalciferol affects proteins regulating malonyl CoA availability and intracellular Ca2+ handling proteins.
ISSN:0231-5882
1338-4325
1338-4325
DOI:10.4149/gpb_2023005