MAPK Phosphatase-2 (MKP-2) Is Induced by hCG and Plays a Role in the Regulation of CYP11A1 Expression in MA-10 Leydig Cells

Author:

Gómez Natalia V.1,Gorostizaga Alejandra B.1,Mori Sequeiros García María M.1,Brion Laura2,Acquier Andrea13,González-Calvar Silvia I.45,Méndez Carlos F.13,Podestá Ernesto J.6,Paz Cristina1

Affiliation:

1. Laboratory of Phosphatases in Signal Transduction (N.V.G., A.B.G., M.M.M.S.G., A.A., C.F.M., C.P.), University of Buenos Aires, Paraguay 2155, (C1121ABG) Buenos Aires, Argentina

2. Membrane Signaling Networks, Atherosclerosis Research Unit, Department of Medicine (L.B.), Karolinska Institutet, Center for Molecular Medicine, Karolinska University Hospital-Solna, 171 76 Stockholm, Sweden

3. Pharmacology Unit, School of Dentistry (A.A., C.F.M.), University of Buenos Aires, Marcelo T. de Alvear 2142, Buenos Aires (C1122AAH), Argentina

4. Institute of Biology and Experimental Medicine (S.I.G.-C.), National Council for Scientific and Technical Research, Vuelta de Obligado 2490 (C1428DN), Buenos Aires, Argentina

5. School of Medicine (S.I.G.-C.), University of Buenos Aires, Paraguay 2155 (C1121ABG) Buenos Aires, Argentina

6. Laboratory of Hormones in Cell Regulation and Differentiation (E.J.P.), Institute for Biomedical Research (INBIOMED), Department of Biochemistry, School of Medicine, University of Buenos Aires, Paraguay 2155, (C1121ABG) Buenos Aires, Argentina

Abstract

Abstract MAPKs such as ERK1/2 are dephosphorylated, and consequently inactivated, by dual specificity phosphatases (MKPs). In Leydig cells, LH triggers ERK1/2 phosphorylation through the action of protein kinase A. We demonstrate that, in MA-10 Leydig cells, LH receptor activation by human chorionic gonadotropin (hCG) up-regulates MKP-2, a phosphatase that dephosphorylates ERK1/2, among other MAPKs. After 2 hours, hCG and 8-bromo-cAMP (8Br-cAMP) significantly increased MKP-2 mRNA levels (3-fold), which declined to basal levels after 6 hours. MKP-2 protein accumulation exhibited a similar kinetic profile. In cells transiently expressing flag-MKP-2 protein, hCG/8Br-cAMP stimulation promoted the accumulation of the chimera (2.5-fold after 3 h of stimulation). Pharmacologic and biochemical approaches showed that the accumulation of flag-MKP-2 involves a posttranslational modification that increases MKP-2 half-life. MKP-2 down-regulation by a short hairpin RNA (MKP-2 shRNA) raised the levels of phosphorylated ERK1/2 reached by 8Br-cAMP stimulation. This effect was evident after 180 min of stimulation, which suggests that MKP-2 down-regulates the late phase of cAMP-induced ERK1/2 activity. Also, MKP-2 down-regulation by MKP-2 shRNA increased the stimulatory effect of 8Br-cAMP on both promoter activity and messenger levels of CYP11A1, which encodes for the steroidogenic enzyme P450scc and is induced by LH/hCG through protein kinase A and ERK1/2 activities. Our findings demonstrate, for the first time, that LH/hCG tightly regulates MKP-2 expression, which modulates the induction of CYP11A1 by 8Br-cAMP. MKP-2 up-regulation might control ERK1/2 activity in a specific temporal frame to modulate the expression of a finite repertory of ERK-dependent genes.

Publisher

The Endocrine Society

Subject

Endocrinology

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