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Control of duration of the first two mitoses in a mouse embryo
M A Ciemerych1, B Maro, J Z Kubiak
1Institute of Zoology, Warsaw University, Poland.
Abstract:
The duration of M-phase is largely determined by the time necessary for the formation of a functional metaphase spindle and the correct alignment of all chromosomes on the metaphase plate. The spindle assembly checkpoint prevents the exit from M-phase before the proper alignment of all chromosomes on a metaphase plate in many cell types. In the present paper we show that the first mitotic M-phase of the mouse embryo lasts about 119 min, while the second embryonic M-phase lasts only about 70 min. Histone H1 kinase is activated rapidly during nuclear envelope breakdown in both mitoses. Its maximum, however, is followed by a plateau only during the first mitosis. In the second mitosis, the inactivation of histone H1 kinase activity follows its maximum directly. Histone H1 kinase is more stable in the cytoplasts obtained from mouse embryos during the first embryonic M-phase than during the second one. The stability of histone H1 kinase is greatly increased by the presence of the mitotic apparatus in both M-phases. The mitotic spindle assembly during the first and the second mitoses differs and the first metaphase spindle is stabilised during the period of maximum histone H1 kinase activity. These data show that an unknown developmentally regulated mechanism controls the duration of the two first mitoses in the mouse embryo.
Insights
The first and second embryonic cell divisions in mice have different durations, regulated by histone H1 kinase activity and mitotic spindle assembly. A developmentally controlled mechanism influences these early embryonic cell cycle timings.
Area of Science:
- Cell Biology
- Developmental Biology
- Molecular Biology
Background:
- M-phase duration is critical for cell division, influenced by spindle formation and chromosome alignment.
- The spindle assembly checkpoint ensures proper chromosome alignment before mitotic exit.
Purpose of the Study:
- To investigate the duration and regulation of the first two mitotic M-phases in mouse embryos.
- To analyze the role of histone H1 kinase activity and mitotic spindle assembly in controlling M-phase duration.
Main Methods:
- Measurement of M-phase duration in the first and second embryonic mitoses.
- Assay of histone H1 kinase activity during M-phase.
- Analysis of mitotic spindle assembly and stability in cytoplasts.
Main Results:
- The first embryonic M-phase lasted approximately 119 minutes, while the second lasted about 70 minutes.
- Histone H1 kinase activation and inactivation patterns differed between the first and second mitoses.
- Mitotic spindle assembly varied between the two divisions, with the first metaphase spindle stabilizing during peak histone H1 kinase activity.
Conclusions:
- An unidentified, developmentally regulated mechanism controls the duration of the first two embryonic mitoses in mice.
- Histone H1 kinase stability and mitotic spindle dynamics are key factors in regulating M-phase length during early embryogenesis.