Skip to main navigation Skip to search Skip to main content

Regulation of the G2/M transition in Xenopus oocytes by the cAMP-dependent protein kinase

  • Patrick Eyers
  • , Patrick A. Eyers
  • , Junjun Liu
  • , Nobuhiro R. Hayashi
  • , Andrea L. Lewellyn
  • , Jean Gautier
  • , James L. Maller

    Research output: Contribution to journalArticlepeer-review

    Abstract

    Vertebrate oocytes are arrested in G2 phase of the cell cycle at the prophase border of meiosis I. Progesterone treatment of Xenopus oocytes releases the G2 block and promotes entry into the M phases of meiosis I and II. Substantial evidence indicates that the release of the G2 arrest requires a decrease in cAMP and reduced activity of the cAMP-dependent protein kinase (PKAc). It has been reported and we confirm here that microinjection of either wild type or kinase-dead K72R PKAc inhibits progesterone-dependent release of the G2 arrest with equal potency and that inhibition can be reversed by a second injection of the heat-stable inhibitor of PKAc, PKI. However, a mutant enzyme predicted to be completely kinase-dead from the crystal structure of PKAc, K72H PKAc, was much less inhibitory when carrying additional mutations that block interaction with either type I or type II regulatory subunit. Moreover, inhibition by K72H PKAc was reversed by PKI at a 30-fold lower concentration and with more rapid kinetics compared with wild type PKAc. K72R PKAc was found to have low but detectable activity after incubation in an oocyte extract. These results indicate that inhibition of the progesterone-dependent G2/M transition in oocytes after microinjection of dead PKAc reflects either low residual activity or binding to regulatory subunits with a resulting net increase in the level of endogenous wild type PKAc. Consistent with this hypothesis, the induction of mitosis in Xenopus egg extracts by the addition of cyclin B was blocked by wild type PKAc but not by K72H PKAc. The identification of substrates for PKAc that maintain cell cycle arrest in G2 remains an important goal for future work. © 2005 by The American Society for Biochemistry and Molecular Biology, Inc.
    Original languageEnglish
    Pages (from-to)24339-24346
    Number of pages7
    JournalJournal of Biological Chemistry
    Volume280
    Issue number26
    DOIs
    Publication statusPublished - 1 Jul 2005

    Fingerprint

    Dive into the research topics of 'Regulation of the G2/M transition in Xenopus oocytes by the cAMP-dependent protein kinase'. Together they form a unique fingerprint.

    Cite this