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Vitamin D Increases Irisin Serum Levels and the Expression of Its Precursor in Skeletal Muscle

Lorenzo Sanesi, Manuela Dicarlo, Patrizia Pignataro, Roberta Zerlotin, Flavia Pugliese, Carla Columbu, Vincenzo Carnevale, Silvia Tunnera, Alfredo Scillitani, Maria Grano, Graziana Colaianni, Silvia Colucci

2023International Journal of Molecular Sciences23 citationsDOIOpen Access PDF

Abstract

Irisin is a myokine synthesized by skeletal muscle, which performs key actions on whole-body metabolism. Previous studies have hypothesized a relationship between irisin and vitamin D, but the pathway has not been thoroughly investigated. The purpose of the study was to evaluate whether vitamin D supplementation affected irisin serum levels in a cohort of 19 postmenopausal women with primary hyperparathyroidism (PHPT) treated with cholecalciferol for six months. In parallel, to understand the possible link between vitamin D and irisin, we analyzed the expression of the irisin precursor, Fndc5, in the C2C12 myoblast cell line treated with a biologically active form of vitamin D, 1α,25-dihydroxyvitamin D3 (1,25(OH)2D3). Our results demonstrate that vitamin D supplementation resulted in a significant increase in irisin serum levels (p = 0.031) in PHPT patients. In vitro, we show that vitamin D treatment on myoblasts enhanced Fndc5 mRNA after 48 h (p = 0.013), while it increased mRNAs of sirtuin 1 (Sirt1) (p = 0.041) and peroxisome proliferator-activated receptor γ coactivator 1α (Pgc1α) (p = 0.017) over a shorter time course. Overall, our data suggest that vitamin-D-induced modulation of Fndc5/irisin occurs through up-regulation of Sirt1, which together with Pgc1α, is an important regulator of numerous metabolic processes in skeletal muscle.

Topics & Concepts

FNDC5EndocrinologyInternal medicineMyokineVitamin D and neurologySkeletal muscleCalcitriol receptorCoactivatorvitamin D deficiencyVitaminC2C12CholecalciferolMyocyteBiologyChemistryMedicineCellMyogenesisBiochemistryTranscription factorGeneFibronectinAdipose Tissue and MetabolismExercise and Physiological ResponsesAdipokines, Inflammation, and Metabolic Diseases
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