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The nuclear receptor steroidogenic factor 1 (SF-1) is essential for adrenal development and steroidogenesis. The atypical orphan nuclear receptor Dax-1 binds to SF-1 and represses SF-1 target genes. Paradoxically, however, loss-of-function mutations of Dax-1 also cause adrenal hypoplasia, suggesting that Dax-1 may function as an SF-1 coactivator under some circumstances. Indeed, we found that Dax-1 can function as a dosage-dependent SF-1 coactivator. Both SF-1 and Dax-1 bind to steroid receptor RNA activator (SRA), a coactivator that functions as an RNA. The coactivator TIF2 also associates with Dax-1 and synergistically coactivates SF-1 target gene transcription. A naturally occurring Dax-1 mutation inhibits this transactivation, and the mutant Dax-1-TIF2 complex mislocalizes in living cells. Coactivation by Dax-1 is abolished by SRA knockdown. The expression of the steroidogenic gene products steroidogenic acute regulatory protein (StAR) and melanocortin 2 receptor is reduced in adrenal Y1 cells following the knockdown of endogenous SRA. Similarly, the knockdown of endogenous Dax-1 downregulates the expression of the steroidogenic gene products CYP11A1 and StAR in both H295R adrenal and MA-10 Leydig cells. These findings reveal novel functions of SRA and Dax-1 in steroidogenesis and adrenal biology.
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http://dx.doi.org/10.1128/MCB.01010-08 | DOI Listing |
NAR Genom Bioinform
June 2025
Centre National de la Recherche Scientifique, I nstitut de Pharmacologie Moléculaire et Cellulaire, 06560 Valbonne-Sophia Antipolis, France.
AlphaMissense is a valuable resource for discerning important functional regions within proteins, providing pathogenicity heatmaps that highlight the pathogenic risk of specific mutations along the protein sequence. However, due to protein folding and long-range interactions, the actual structural alterations with functional implications may be occurring at a distance from the mutation site. As a result, the identification of the most sensitive structural regions for protein function may be hampered by the presence of mutations that indirectly affect the critical regions from a distance.
View Article and Find Full Text PDFComp Biochem Physiol Part D Genomics Proteomics
September 2025
Key Laboratory of Maricultural, Ministry of Education, Ocean University of China, Qingdao, PR China.
FTZ-F1 (Fushi tarazu factor-1) is a crucial member of the monomeric orphan nuclear receptor family, playing essential roles in reproductive development, steroidogenesis, and metabolism. However, studies on the function of FTZ-F1 and its target genes in bivalve mollusks remain limited. In this study, we conducted a genome-wide analysis of Chlamys farreri and identified two FTZ-F1 family members, designated as Cf FTZ-F1 and Cf FTZ-F1b.
View Article and Find Full Text PDFJ Pediatr Endocrinol Metab
December 2024
Department of Pediatric Endocrinology, Stony Brook Children's Hospital, Stony Brook, NY, USA.
Endokrynol Pol
October 2024
Clinic of Allergy and Immunology, University Clinical Center of Serbia, Faculty of Medicine University of Belgrade, Belgrade, Serbia.
Zhonghua Nei Ke Za Zhi
August 2024
Department of Endocrinology and Metabolism, West China Hospital, Sichuan University, Chengdu 610041, China.