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A Cell Free Assay to Study Chromatin Decondensation at the End of Mitosis
Published on: December 19, 2015
Pre-M phase-promoting factor associates with annulate lamellae in Xenopus oocytes and egg extracts
Clare Beckhelling1, Patrick Chang, Sandra Chevalier
1Unité Mixte Recherche 7009, Centre National de la Recherche Scientifique/Université Paris VI, Observatoire Oceanologique de Villefranche sur Mer, 06234, Villefranche sur Mer, France.
Abstract:
We have used complementary biochemical and in vivo approaches to study the compartmentalization of M phase-promoting factor (MPF) in prophase Xenopus eggs and oocytes. We first examined the distribution of MPF (Cdc2/CyclinB2) and membranous organelles in high-speed extracts of Xenopus eggs made during mitotic prophase. These extracts were found to lack mitochondria, Golgi membranes, and most endoplasmic reticulum (ER) but to contain the bulk of the pre-MPF pool. This pre-MPF could be pelleted by further centrifugation along with components necessary to activate it. On activation, Cdc2/CyclinB2 moved into the soluble fraction. Electron microscopy and Western blot analysis showed that the pre-MPF pellet contained a specific ER subdomain comprising "annulate lamellae" (AL): stacked ER membranes highly enriched in nuclear pores. Colocalization of pre-MPF with AL was demonstrated by anti-CyclinB2 immunofluorescence in prophase oocytes, in which AL are positioned close to the vegetal surface. Green fluorescent protein-CyclinB2 expressed in oocytes also localized at AL. These data suggest that inactive MPF associates with nuclear envelope components just before activation. This association may explain why nuclei and centrosomes stimulate MPF activation and provide a mechanism for targeting of MPF to some of its key substrates.
Insights
Inactive M phase-promoting factor (MPF) is compartmentalized within Xenopus eggs, associating with specific endoplasmic reticulum (ER) structures called annulate lamellae (AL) before activation. This localization may target MPF to key substrates during cell division.
Area of Science:
- Cell Biology
- Molecular Biology
- Developmental Biology
Background:
- M phase-promoting factor (MPF) is crucial for initiating mitosis.
- Understanding MPF regulation and localization is key to deciphering cell cycle control.
Purpose of the Study:
- To investigate the subcellular localization and compartmentalization of inactive MPF in prophase Xenopus eggs and oocytes.
- To identify the specific structures associated with pre-MPF before its activation.
Main Methods:
- Biochemical fractionation and high-speed centrifugation of Xenopus egg extracts.
- Electron microscopy and Western blot analysis.
- Immunofluorescence and fluorescent protein tagging (GFP-CyclinB2) in prophase oocytes.
Main Results:
- Inactive MPF (pre-MPF) was found in a pelletable fraction lacking most organelles but containing a specific ER subdomain, annulate lamellae (AL).
- Annulate lamellae (AL), ER membranes enriched in nuclear pores, colocalized with pre-MPF.
- MPF (Cdc2/CyclinB2) translocated to the soluble fraction upon activation.
Conclusions:
- Inactive MPF associates with annulate lamellae (AL), a specific endoplasmic reticulum (ER) subdomain, in prophase Xenopus oocytes.
- This association with nuclear pore-enriched structures may precede MPF activation and target it to substrates.

