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Fasting-induced transcription factors repress vitamin D bioactivation, a mechanism for vitamin D deficiency in diabetes

Aatsinki, Sanna-Mari; Elkhwanky, Mahmoud-Sobhy; Kummu, Outi; Karpale, Mikko; Buler, Marcin; Viitala, Pirkko; Rinne, Valtteri; Mutikainen, Maija; Tavi, Pasi; Franko, Andras; Wiesner, Rudolf J.; Chambers, Kari T.; Finck, Brian N.; Hakkola, Jukka

 
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URL:
https://doi.org/10.2337/db18-1050

Aatsinki, Sanna-Mari
Elkhwanky, Mahmoud-Sobhy
Kummu, Outi
Karpale, Mikko
Buler, Marcin
Viitala, Pirkko
Rinne, Valtteri
Mutikainen, Maija
Tavi, Pasi
Franko, Andras
Wiesner, Rudolf J.
Chambers, Kari T.
Finck, Brian N.
Hakkola, Jukka
American Diabetes Association

Aatsinki, S.-M., Elkhwanky, M.-S., Kummu, O., Karpale, M., Buler, M., Viitala, P., … Hakkola, J. (2019). Fasting-Induced Transcription Factors Repress Vitamin D Bioactivation, a Mechanism for Vitamin D Deficiency in Diabetes. Diabetes, 68(5), 918–931. https://doi.org/10.2337/db18-1050

https://rightsstatements.org/vocab/InC/1.0/
© 2019 by the American Diabetes Association. This is an author-created, uncopyedited electronic version of an article accepted for publication in Diabetes. The American Diabetes Association (ADA), publisher of Diabetes, is not responsible for any errors or omissions in this version of the manuscript or any version derived from it by third parties. The definitive publisher-authenticated version will be available in a future issue of Diabetes in print and online at https://diabetes.diabetesjournals.org/content/68/5/918.long.
https://rightsstatements.org/vocab/InC/1.0/
doi:https://doi.org/10.2337/db18-1050
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Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi-fe2019062021526
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Abstract

Low 25-hydroxyvitamin D levels correlate with the prevalence of diabetes; however, the mechanisms remain uncertain. Here, we show that nutritional deprivation–responsive mechanisms regulate vitamin D metabolism. Both fasting and diabetes suppressed hepatic cytochrome P450 (CYP) 2R1, the main vitamin D 25-hydroxylase responsible for the first bioactivation step. Overexpression of coactivator peroxisome proliferator–activated receptor γ coactivator 1-α (PGC-1α), induced physiologically by fasting and pathologically in diabetes, resulted in dramatic downregulation of CYP2R1 in mouse hepatocytes in an estrogen-related receptor α (ERRα)–dependent manner. However, PGC-1α knockout did not prevent fasting-induced suppression of CYP2R1 in the liver, indicating that additional factors contribute to the CYP2R1 repression. Furthermore, glucocorticoid receptor (GR) activation repressed the liver CYP2R1, suggesting GR involvement in the regulation of CYP2R1. GR antagonist mifepristone partially prevented CYP2R1 repression during fasting, suggesting that glucocorticoids and GR contribute to the CYP2R1 repression during fasting. Moreover, fasting upregulated the vitamin D catabolizing CYP24A1 in the kidney through the PGC-1α-ERRα pathway. Our study uncovers a molecular mechanism for vitamin D deficiency in diabetes and reveals a novel negative feedback mechanism that controls crosstalk between energy homeostasis and the vitamin D pathway.

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