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A propagated wave of MPF activation accompanies surface contraction waves at first mitosis in Xenopus

D Pérez-Mongiovi1, P Chang, E Houliston

  • 1Unité de Biologie Cellulaire Marine, ERS 643 CNRS-Université Paris VI, Station Zoologique, 06230 Villefranche-sur-mer, France.

Insights

Two surface contraction waves (SCWs) in Xenopus eggs correlate with maturation-promoting factor (MPF) activity. MPF activation requires animal cytoplasm components and propagates autocatalytically, driving SCW progression.

Area of Science:

  • Cell Biology
  • Developmental Biology
  • Molecular Biology

Background:

  • Surface contraction waves (SCWs) are observed during Xenopus egg mitosis.
  • SCWs are thought to be linked to the activity of maturation-promoting factor (MPF).

Purpose of the Study:

  • To investigate the mechanism of MPF regulation in relation to SCW progression in Xenopus eggs.
  • To determine the role of different egg regions in MPF activation and SCW propagation.

Main Methods:

  • Dissection of intact Xenopus eggs and cultured fragments.
  • Analysis of histone HI kinase activity, Cdc2, and cyclin B distributions.
  • Time-lapse videomicroscopy of subcortical mitochondrial islands.

Main Results:

  • MPF activation involves Cdc2 dephosphorylation and requires animal cytoplasm components.
  • MPF activation propagates autocatalytically across the egg.
  • SCW progression in the vegetal hemisphere is dependent on MPF activation and blocked by ligation.

Conclusions:

  • MPF activation is triggered by animal cytoplasm factors and propagates via a positive feedback loop.
  • The first SCW is a consequence of MPF activation, potentially involving microtubule depolymerization.
  • The second SCW and cyclin B destruction may be downstream events of MPF activation or independent processes.

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