International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertilization are accompanied by periodic oscillations of intracellular pH (pHi). Cycling of pHi occurs in phase with several other oscillatory activities, namely nuclear divisions, M phase-promoting factor (MPF) activity, and surface contraction waves (SCWs). We report that treatments that abolish cycling of MPF activity and the SCWs also suppress the pHi oscillations, whereas those that block cell division without affecting neither MPF activity nor the SCWs do not suppress the pHi oscillations. Experiments on enucleated oocytes, matured in vitro and activated, demonstrated that the activity governing the rhythmicity of the pHi oscillations reside...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...
International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertil...
International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertil...
International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertil...
International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertil...
International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertil...
International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertil...
International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertil...
International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertil...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...
International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertil...
International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertil...
International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertil...
International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertil...
International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertil...
International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertil...
International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertil...
International audienceIn Xenopus embryos, the successive and rapid cell divisions that follow fertil...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...
International audiencePrevious work on Xenopus laevis suggests a temporal coincidence between inacti...