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Testosterone inhibits human wild-type and chimeric aldosterone synthase activity in vitro

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REVISTA MEDICA DE CHILE
卷 149, 期 11, 页码 1539-1543

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SOC MEDICA SANTIAGO

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Cytochrome P-450 CYP11B2; HEK293 Cells; Testosterone

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The study revealed that testosterone inhibits the enzymes associated with Familial hyperaldosteronism type I, showing higher efficacy and potency on ASWT compared to ASCE. Molecular modelling studies demonstrated different orientations of testosterone in the crystal structures of ASWT and ASCE.
Background: Familial hyperaldosteronism type I is caused by the generation of a chimeric aldosterone synthase enzyme (ASCE) which is regulated by ACTH instead of angiotensin II. We have reported that in vitro, the wild-type (ASWT) and chimeric aldosterone synthase (ASCE) enzymes are inhibited by progesterone and estradiol does not affect their activity. Aim: To explore the direct action of testosterone on ASWT and ASCE enzymes. Material and Methods: HEK-293 cells were transiently transfected with vectors containing the full ASWT or ASCE cDNAs. The effect of testosterone on AS enzyme activities was evaluated incubating HEK-cells transfected with enzyme vectors and adding deoxycorticosterone (DOC) alone or DOC plus increasing doses of testosterone. Aldosterone production was measured by HPLC-MS/MS. Docking of testosterone within the active sites of both enzymes was performed by modelling in silico. Results: In this system, testosterone inhibited ASWT (90% inhibition at five mu M, 50% inhibitory concentration (IC50) =1.690 mu M) with higher efficacy and potency than ASCE (80% inhibition at five mu M, IC50=3.176 mu M). Molecular modelling studies showed different orientation of testosterone in ASWT and ASCE crystal structures. Conclusions: The inhibitory effect of testosterone on ASWT or ASCE enzymes is a novel non-genomic testosterone action, suggesting that further clinical studies are needed to assess the role of testosterone in the screening and diagnosis of primary aldosteronism.

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