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1.
J Biol Chem ; 285(33): 25624-36, 2010 Aug 13.
Artículo en Inglés | MEDLINE | ID: mdl-20551320

RESUMEN

The prostaglandin F2alpha (PGF2alpha) receptor (FP) is a key regulator of parturition and a target for pharmacological management of preterm labor. However, an incomplete understanding of signaling pathways regulating myometrial contraction hinders the development of improved therapeutics. Here we used a peptidomimetic inhibitor of parturition in mice, PDC113.824, whose structure was based on the NH(2)-terminal region of the second extracellular loop of FP receptor, to gain mechanistic insight underlying FP receptor-mediated cell responses in the context of parturition. We show that PDC113.824 not only delayed normal parturition in mice but also that it inhibited both PGF2alpha- and lipopolysaccharide-induced preterm labor. PDC113.824 inhibited PGF2alpha-mediated, G(alpha)(12)-dependent activation of the Rho/ROCK signaling pathways, actin remodeling, and contraction of human myometrial cells likely by acting as a non-competitive, allosteric modulator of PGF2alpha binding. In contrast to its negative allosteric modulating effects on Rho/ROCK signaling, PDC113.824 acted as a positive allosteric modulator on PGF2alpha-mediated protein kinase C and ERK1/2 signaling. This bias in receptor-dependent signaling was explained by an increase in FP receptor coupling to G(alpha)(q), at the expense of coupling to G(alpha)(12). Our findings regarding the allosteric and biased nature of PDC113.824 offer new mechanistic insights into FP receptor signaling relevant to parturition and suggest novel therapeutic opportunities for the development of new tocolytic drugs.


Asunto(s)
Dinoprost/metabolismo , Parto/efectos de los fármacos , Péptidos/farmacología , Transducción de Señal/efectos de los fármacos , Quinasas Asociadas a rho/metabolismo , Regulación Alostérica/efectos de los fármacos , Animales , Línea Celular , Femenino , Técnica del Anticuerpo Fluorescente , Humanos , Ratones , Trabajo de Parto Prematuro/inducido químicamente , Trabajo de Parto Prematuro/tratamiento farmacológico , Péptidos/síntesis química , Péptidos/uso terapéutico , Embarazo , Proteína Quinasa C/metabolismo
2.
Mol Endocrinol ; 26(7): 1189-202, 2012 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-22638073

RESUMEN

The G protein-coupled prostaglandin F2α (PGF2α) receptor [F prostanoid (FP) receptor] has been implicated in many physiological events including cardiovascular, respiratory, immune, reproductive, and endocrine responses. Binding of PGF2α to FP receptor elicits inositol production and protein kinase C-dependent MAPK activation through Gα(q) coupling. Here we report that AL-8810, previously characterized as an orthosteric antagonist of PGF2α-dependent, Gα(q)-mediated signaling, potently activates ERK1/2 in a protein kinase C-independent manner. Rather, AL-8810 promoted ERK1/2 activation via an epidermal growth factor receptor transactivation mechanism in both human embryonic kidney 293 cells and in the MG-63 osteoblast-like cells, which express endogenous FP receptors. Neither AL-8810- nor PGF2α-mediated stimulation of FP receptor promoted association with ß-arrestins, suggesting that MAPK activation induced by these ligands is independent of ß-arrestin's signaling scaffold functions. Interestingly, the spatiotemporal activation of ERK1/2 promoted by AL-8810 and PGF2α showed almost completely opposite responses in the nucleus and the cytosol. Finally, using [(3)H]thymidine incorporation, we noted differential regulation of PGF2α- and AL-8810-induced cell proliferation in MG-63 cells. This study reveals, for the first time, the signaling biased nature of FP receptor orthosteric ligands toward MAPK signaling. Our findings on the specific patterns of ERK1/2 activation promoted by FP receptor ligands may help dissect the distinct roles of MAPK in FP receptor-dependent physiological responses.


Asunto(s)
Receptores ErbB/metabolismo , Quinasas MAP Reguladas por Señal Extracelular/metabolismo , Sistema de Señalización de MAP Quinasas/fisiología , Receptores de Prostaglandina/metabolismo , Arrestinas/metabolismo , Proliferación Celular , Dinoprost/análogos & derivados , Dinoprost/metabolismo , Dinoprost/farmacología , Células HEK293 , Humanos , Inositol/biosíntesis , Sistema de Señalización de MAP Quinasas/efectos de los fármacos , Unión Proteica , Proteína Quinasa C/metabolismo , beta-Arrestinas
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