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Primary Culture of Rat Adrenocortical Cells and Assays of Steroidogenic Functions
Published on: March 12, 2019
ACTH and PRL sensitivity of highly differentiated cell lines obtained by adrenocortical targeted oncogenesis
B Ragazzon1, A M Lefrançois-Martinez, P Val
1UMR6547 CNRS-Université Clermont II GEEM, Aubière, France.
Abstract:
We established cell lines from adrenal tumors of transgenic mice harboring the large T-antigen of simian virus 40 under the control of the adrenocortical specific promoter of the scavenger aldose reductase-like akr1b7 gene. Mass spectrometry analyses of serum-supplemented or serum-free culture media showed that ATC1 line secreted only corticosterone. These cells, propagated over 25 passages, were characterized with regard to ACTH and PRL responsiveness, as measured by increased corticosterone production, induction of genes involved in the different steps of steroidogenesis (cholesterol delivery, steroid biosynthesis and detoxification of by-products) and expression of transcriptional regulators (SF-1 and DAX1). Corticosterone secretion (RIA) in serum-free medium was stimulated over 12-fold after 6 h treatment with either 10(-9)M ACTH or PRL and both hormones seemed equivalent in promoting this secretion (149 +/- 14 ng and 145 +/- 18 ng/10(6) cells/6 h, respectively). As expected, Northern blots indicate that ATC1 cells expressed mRNAs for the enzymes of corticosterone metabolism CYP11B1 and CYP21A, as well as those for the proteins SIK, SRB1, StAR, CYP11A1, and AKR1B7. Interestingly, these cells have maintained not only the expression of SF-1 but also that of DAX1. No expression of the zona glomeruloza-specific cyp11b2 gene was detected. With the exception of cyp21a and mc2r genes which were constitutively expressed, most of the genes above mentioned were induced in a time- and dose-dependent fashion in response to ACTH or PRL while DAX1 was repressed. Importantly, hormone-mediated repression of DAX1 gene expression was also observed in vivo in mice adrenals. Altogether these data demonstrate that ATC1 line provided an unique model of well differentiated zona fasciculata immortalized cells suitable for the dissection of molecular events leading to ACTH and PRL regulation of adrenal functions.
Insights
We developed a new immortalized mouse adrenal cell line (ATC1) that secretes corticosterone. This model effectively mimics zona fasciculata cells, responding to ACTH and prolactin (PRL) to regulate steroidogenesis gene expression.
Area of Science:
- Endocrinology
- Molecular Biology
- Cell Biology
Background:
- Adrenal tumors in transgenic mice were used to establish immortalized cell lines.
- The ATC1 cell line was derived using the simian virus 40 large T-antigen under the control of the akr1b7 promoter.
- Mass spectrometry confirmed ATC1 cells secrete corticosterone.
Purpose of the Study:
- To characterize the ATC1 cell line's responsiveness to ACTH and PRL.
- To investigate the regulation of steroidogenesis genes and transcriptional regulators in response to hormonal stimulation.
- To establish a model for studying molecular events in adrenal function.
Main Methods:
- Cell culture and propagation over 25 passages.
- Radioimmunoassay (RIA) for corticosterone secretion measurement.
- Northern blot analysis for gene expression (CYP11B1, CYP21A, SIK, SRB1, StAR, CYP11A1, AKR1B7, SF-1, DAX1, cyp11b2).
Main Results:
- ATC1 cells showed a >12-fold increase in corticosterone secretion upon ACTH or PRL stimulation.
- Genes involved in steroidogenesis and key regulators like SF-1 were induced by ACTH/PRL.
- DAX1 expression was repressed by hormones, an effect also observed in vivo.
Conclusions:
- The ATC1 cell line represents a well-differentiated, immortalized zona fasciculata model.
- This model is suitable for dissecting the molecular mechanisms of ACTH and PRL regulation of adrenal functions.
- The findings highlight the complex regulation of steroidogenesis and DAX1 by pituitary hormones.

