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Calcitriol increases frataxin levels and restores mitochondrial function in cell models of Friedreich Ataxia

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Issue date
2021
Author
Britti, Elena
Delaspre, Fabien
Sanz Alcázar, Arabela
Medina Carbonero, Marta
Llovera i Tomàs, Marta
Purroy Lledós, Rosa
Mincheva Tasheva, Stefka
Tamarit Sumalla, Jordi
Ros Salvador, Joaquim
Suggested citation
Britti, Elena; Delaspre, Fabien; Sanz Alcázar, Arabela; Medina Carbonero, Marta; Llovera i Tomàs, Marta; Purroy Lledós, Rosa; ... Ros Salvador, Joaquim. (2021) . Calcitriol increases frataxin levels and restores mitochondrial function in cell models of Friedreich Ataxia. Biochemical Journal, 2021, vol. 478, núm. 1. https://doi.org/10.1042/BCJ20200331.
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Abstract
Friedreich Ataxia (FA) is a neurodegenerative disease caused by the deficiency of frataxin, a mitochondrial protein. In primary cultures of dorsl root ganglia neurons, we showed that frataxin depletion resulted in decreased levels of the mitochondrial calcium exchanger NCLX, neurite degeneration and apoptotic cell death. Here we describe that frataxin-deficient dorsal root ganglia neurons display low levels of ferredoxin 1, a mitochondrial Fe/S cluster-containing protein that interacts with frataxin and, interestingly, is essential for the synthesis of calcitriol, the active form of vitamin D. We provide data that calcitriol supplementation, used at nanomolar concentrations, is able to reverse the molecular and cellular markers altered in DRG neurons. Calcitriol is able to recover both ferredoxin 1 and NCLX levels and restores mitochondrial membrane potential indicating an overall mitochondrial function improvement. Accordingly, reduction of apoptotic markers and neurite degeneration was observed and, as a result, cell survival was also recovered. All these beneficial effects would be explained by the finding that calcitriol is able to increase the mature frataxin levels in both, frataxin-deficient DRG neurons and cardiomyocytes; remarkably, this increase also occurs in lymphoblastoid cell lines derived from FA patients. In conclusion, these results provide molecular bases to consider calcitriol for an easy and affordable therapeutic approach for FA patients.
URI
http://hdl.handle.net/10459.1/72921
DOI
https://doi.org/10.1042/BCJ20200331
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Biochemical Journal, 2021, vol. 478, núm. 1
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  • Articles publicats (Ciències Mèdiques Bàsiques) [581]
  • Publicacions de projectes de recerca del Plan Nacional [2956]

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