info:eu-repo/semantics/article
Hormonal activation of a kinase cascade localized at the mitochondria is required for StAR protein activity
Fecha
2009-12Registro en:
Poderoso, Cecilia; Maloberti, Paula Mariana; Duarte, Alejandra Beatriz; Neuman, Maria Isabel; Paz, Cristina del Valle; et al.; Hormonal activation of a kinase cascade localized at the mitochondria is required for StAR protein activity; Elsevier Ireland; Molecular and Cellular Endocrinology; 300; 1-2; 12-2009; 37-42
0303-7207
CONICET Digital
CONICET
Autor
Poderoso, Cecilia
Maloberti, Paula Mariana
Duarte, Alejandra Beatriz
Neuman, Maria Isabel
Paz, Cristina del Valle
Cornejo Maciel, Maria Fabiana
Podesta, Ernesto Jorge
Resumen
It is known that ERK1/2 and MEK1/2 participate in the regulation of Star gene transcription. However, their role in StAR protein post-transcriptional regulation is not described yet. In this study we analyzed the relationship between the MAPK cascade and StAR protein phosphorylation and function. We have demonstrated that (a) steroidogenesis in MA-10 Leydig cells depends on the specific of ERK1/2 activation at the mitochondria; (b) ERK1/2 phosphorylation is driven by mitochondrial PKA and constitutive MEK1/2 in this organelle; (c) active ERK1/2 interacts with StAR protein, leads to StAR protein phosphorylation at Ser(232) only in the presence of cholesterol; (d) directed mutagenesis of Ser(232) (S232A) inhibited in vitro StAR protein phosphorylation by ERK1; (e) transient transfection of MA-10 cells with StAR S232A cDNA markedly reduced the yield of progesterone production. We show that StAR protein is a substrate of ERK1/2, and that mitochondrial ERK1/2 is part of a multimeric complex that regulates cholesterol transport.