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Angiotensin II-upregulated MAP kinase phosphatase-3 modulates FOXO1 and p21 in adrenocortical H295R cells
M Mercedes Mori Sequeiros Garcia1,2, Juan M Cohen Sabban1,2, Melina A Dattilo1,2
1Universidad de Buenos Aires, Facultad de Medicina, Departamento de Bioquímica Humana, Buenos Aires, Argentina.
Abstract:
MAPK phosphatases (MKP) downregulate the activity of mitogen-activated protein kinases (MAPK), such as ERK1/2, and modulate the processes regulated by these kinases. ERK1/2 participate in a wide range of processes including tissue-specific hormone-stimulated steroidogenesis. H295R cells are a suitable model for the study of human adrenal cortex functions, particularly steroid synthesis, and respond to angiotensin II (Ang II) triggering ERK1/2 phosphorylation in a transient fashion. MKP-3 dephosphorylates ERK1/2 and, as recently reported, forkhead box protein 1 (FOXO1). Here, we analyzed MKP-3 expression in H295R cells and its putative regulation by Ang II. Results showed the expression of MKP-3 full length (L) and a short splice variant (S), and the upregulation of both isoforms by Ang II. L and S messenger and protein levels increased 30 min after Ang II stimulation and declined over the next 3 h, a temporal frame compatible with ERK1/2 dephosphorylation. In addition, FOXO1 activation is known to include its dephosphorylation and nuclear translocation. Therefore, we analyzed the effect of Ang II on FOXO1 modulation. Ang II induced FOXO1 transient phosphorylation and translocation and also the induction of p21, a FOXO1-dependent gene, whereas MKP-3 knock-down reduced both FOXO1 translocation and p21 induction. These data suggest that, through MKP-3, Ang II counteracts its own effects on ERK1/2 activity and also triggers the activation of FOXO-1 and the induction of cell cycle inhibitor p21. Taken together, the current findings reveal the participation of MKP-3 not only in turn-off but also in turn-on signals which control important cellular processes.
Insights
Angiotensin II (Ang II) upregulates MAPK phosphatase-3 (MKP-3) in adrenal cells, influencing both ERK1/2 dephosphorylation and FOXO1 activation. MKP-3 plays a dual role in cellular signaling, controlling both
Area of Science:
- Endocrinology
- Molecular Biology
- Cell Signaling
Background:
- Mitogen-activated protein kinases (MAPK), including ERK1/2, regulate diverse cellular processes such as steroidogenesis.
- MAPK phosphatases (MKPs) dephosphorylate and downregulate MAPK activity.
- MKP-3 is known to dephosphorylate ERK1/2 and forkhead box protein 1 (FOXO1).
Purpose of the Study:
- To investigate the expression and regulation of MKP-3 by angiotensin II (Ang II) in H295R cells.
- To elucidate the role of MKP-3 in Ang II-mediated signaling pathways, including ERK1/2 and FOXO1 modulation.
Main Methods:
- Analysis of MKP-3 full-length (L) and short (S) splice variants expression in H295R cells.
- Stimulation of H295R cells with Ang II and assessment of MKP-3, ERK1/2, FOXO1, and p21 expression and localization.
- MKP-3 knockdown experiments to determine its role in FOXO1 and p21 regulation.
Main Results:
- Ang II upregulated both MKP-3 L and S isoforms in H295R cells, with peak expression at 30 minutes post-stimulation.
- Ang II induced transient phosphorylation and nuclear translocation of FOXO1, and upregulated the FOXO1-dependent gene p21.
- MKP-3 knockdown attenuated Ang II-induced FOXO1 translocation and p21 induction.
Conclusions:
- MKP-3 is regulated by Ang II in human adrenal cells and participates in both the downregulation of ERK1/2 activity and the activation of FOXO1 signaling.
- MKP-3 plays a critical role in mediating Ang II effects on steroidogenesis-related pathways.
- These findings highlight MKP-3's involvement in both inhibitory and activating signaling cascades within cellular processes.
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