Testosterona inhibe la actividad de la aldosterona sintasa silvestre y quimérica in vitro

Andrea Vecchiola; Cristóbal A. Fuentes; Cristian A. Carvajal; Carmen Campino; Fidel Allende; Alejandra Tapia-Castillo; Carlos F. Lagos; Carlos E. Fardella

Keywords: testosterone, cytochrome p-450, cyp11b2, HEK293 Cells

Abstract

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 pM, 50% inhibitory concentration (IC50) =1.690 pM) with higher efficacy andpotency than ASCE (80% inhibition at five pM, IC50=3.176 pM). 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.

Más información

Título según SCIELO: Testosterona inhibe la actividad de la aldosterona sintasa silvestre y quimérica in vitro
Título de la Revista: REVISTA MEDICA DE CHILE
Volumen: 149
Número: 11
Editorial: Sociedad Médica de Santiago
Fecha de publicación: 2021
Página de inicio: 1539
Página final: 1543
Idioma: es
URL: http://dx.doi.org/10.4067/S0034-98872021001101539
DOI:

10.4067/S0034-98872021001101539

Notas: SCIELO - WOS