Vg1RBP phosphorylation by Erk2 MAP kinase correlates with the cortical release of Vg1 mRNA during meiotic maturation of Xenopus oocytes

  1. Anna Git1,4,
  2. Rachel Allison1,5,
  3. Eusebio Perdiguero2,6,
  4. Angel R. Nebreda2,
  5. Evelyn Houliston3 and
  6. Nancy Standart1
  1. 1Department of Biochemistry, University of Cambridge, Cambridge CB2 1GA, United Kingdom
  2. 2Spanish National Cancer Center (CNIO), Madrid 28029, Spain
  3. 3Developmental Biology Unit 7009, Universite Pierre et Marie Curie (Paris VI), and Centre National de la Recherche (CNRS), Observatoire Oceanologique, 06320 Villefranche-sur-mer, France

    Abstract

    Xenopus Vg1RBP is a member of the highly conserved IMP family of four KH-domain RNA binding proteins, with roles in RNA localization, translational control, RNA stability, and cell motility. Vg1RBP has been implicated in localizing Vg1 mRNAs to the vegetal cortex during oogenesis, in a process mediated by microtubules and microfilaments, and in migration of neural crest cells in embryos. Using c-mos morpholino, kinase inhibitors, and constitutely active recombinant kinases we show that Vg1RBP undergoes regulated phosphorylation by Erk2 MAPK during meiotic maturation, on a single residue, S402, located between the KH2 and KH3 domains. Phosphorylation temporally correlates with the release of Vg1 mRNA from its tight cortical association, assayed in lysates in physiological salt buffers, but does not affect RNA binding, nor self-association of Vg1RBP. U0126, a MAP kinase inhibitor, prevents Vg1RBP cortical release and Vg1 mRNA solubilization in meiotically maturing eggs, while injection of MKK6-DD, a constitutively activated MAP kinase kinase, promotes the release of both Vg1RBP and Vg1 mRNA from insoluble cortical structures. We propose that Erk2 MAP kinase phosphorylation of Vg1RBP regulates the protein:protein-mediated association of Vg1 mRNP with the cytoskeleton and/or ER. Since the MAP kinase site in Vg1RBP is conserved in several IMP homologs, this modification also has important implications for the regulation of IMP proteins in somatic cells.

    Keywords

    Footnotes

    • 4 Present address: Cancer Research UK Cambridge Research Institute, Robinson Way, Cambridge CB2 0RE, United Kingdom;

    • 5 Cambridge Institute for Medical Research (CIMR), Welcome Trust/MRC Building, Cambridge CB2 0XY, United Kingdom;

    • 6 University Pompeu i Frabra (UPF), Barcelona 08003, Spain.

    • Reprint requests to: Nancy Standart, Department of Biochemistry, University of Cambridge, 80 Tennis Court Road, Cambridge, CB2 1GA, United Kingdom; e-mail: nms{at}mole.bio.cam.ac.uk; fax: 01223-766002.

    • Article published online ahead of print. Article and publication date are at http://www.rnajournal.org/cgi/doi/10.1261/rna.1195709.

      • Received May 28, 2008.
      • Accepted February 23, 2009.