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Updated: Jul 9, 2026

Primary Culture of Rat Adrenocortical Cells and Assays of Steroidogenic Functions
Published on: March 12, 2019
miR-486-5p and miR-144-3p as candidate regulators of cortisol biosynthesis: functional and transcriptomic evidence in
Xiaohui Xia1, Alexander Paul2, Ru Zhang3
1Medizinische Klinik und Poliklinik IV, LMU-Klinikum, Ludwig-Maximilians-University, Munich 80336, Germany.
Background:
MicroRNAs (miRNAs) have been identified to regulate gene expression in adrenal disorders.
Objective:
To investigate the effects of specific miRNAs on cortisol biosynthesis.
Methods:
Seven candidate miRNAs were transfected as mimics into steroidogenically active adrenocortical cell lines (NCI-H295R, HAC15, and CU-ACC1). Steroids were measured by liquid chromatography tandem mass spectrometry (LC-MS/MS) and ELISA. Quantitative polymerase chain reaction was performed in all cell lines with additionally microarray analysis in HAC15 cells. Adrenal RNA-sequencing data from patients with Cushing's syndrome (CS, n = 10) and normal controls (n = 8) were analyzed to compare differentially expressed genes (DEGs) and enrichments. miRNA inhibitors were further used for validation.
Results:
miR-486-5p and miR-144-3p mimics reduced cortisol levels by ∼60%-70% in NCI-H295R and HAC15 cells, and LC-MS/MS confirmed reduced steroidogenic metabolites. Both miR-486-5p and miR-144-3p mimics significantly inhibited CYP17A1 and CYP11B2 mRNA levels in NCI-H295R and HAC15 cells. Microarray analysis revealed the DEGs induced by miR-486-5p or miR-144-3p both predominantly enriched in "Metabolic Pathways," consistent with enrichment in the CS adrenal dataset. Common metabolic genes (co-DEGs) between patient samples and miRNA mimic-treated cells exhibited complementary expression patterns. Cotransfection of the corresponding inhibitors attenuated cortisol suppression and metabolic gene changes. Protein-protein interaction analysis further clustered the miR-486-5p- and miR-144-3p-associated co-DEGs into lipid metabolism-related biological process.
Conclusions:
miR-486-5p and miR-144-3p suppress cortisol production in the human adrenocortical cell models of NCI-H295R and its derived HAC15 subclone and are associated with lipid metabolism-related networks, providing new insights into the molecular regulation of cortisol biosynthesis.
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