Endocrinology Journal Article

Cholesterol Deprivation Drives DHEA Biosynthesis

July 19, 2022
 

Emanuele Pignatti, Emre Murat Altinkilic, Konstantin Bräutigam, Michael Grössl, Aurel Perren, Mihaela Zavolan, Christa E Flück
Endocrinology, Volume 163, Issue 7, July 2022, bqac076
https://doi.org/10.1210/endocr/bqac076

Abstract

Adrenarche is an early event in sexual maturation in prepubertal children and corresponds to the postnatal development of the adrenocortical zona reticularis (zR). However, the molecular mechanisms that govern the onset and maturation of zR remain unknown. Using tissue laser microdissection combined with transcript quantification and immunodetection, we showed that the human zR receives low levels of cholesterol in comparison with other adrenal layers. To model this metabolic condition, we challenged adrenal cells in vitro using cholesterol deprivation. This resulted in reprogramming the steroidogenic pathway toward inactivation of 3-beta-hydroxysteroid dehydrogenase type 2 (HSD3B2), increased CYB5A expression, and increased biosynthesis of dehydroepiandrosterone (DHEA), 3 key features of zR maturation during adrenarche. Finally, we found that cholesterol deprivation leads to decreased transcriptional activity of POU3F2, which normally stimulates the expression of HSD3B2 by directly binding to its promoter. These findings demonstrate that cholesterol deprivation can account, at least in part, for the acquisition of a zR-like androgenic program in humans.

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