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海星减数分裂和早期卵裂周期中细胞周期蛋白A/Cdc2和细胞周期蛋白B/Cdc2的体内调控

In vivo regulation of cyclin A/Cdc2 and cyclin B/Cdc2 through meiotic and early cleavage cycles in starfish.

作者信息

Okano-Uchida T, Sekiai T, Lee K, Okumura E, Tachibana K, Kishimoto T

机构信息

Faculty of Biosciences and Biotechnology, Tokyo Institute of Technology, Nagatsuta 4259, Midori-ku, Yokohama, 226-8501, Japan.

出版信息

Dev Biol. 1998 May 1;197(1):39-53. doi: 10.1006/dbio.1998.8881.

Abstract

In starfish, fertilization occurs naturally at late meiosis I. In the absence of fertilization, however, oocytes complete meiosis I and II, resulting in mature eggs arrested at the pronucleus stage, which are still fertilizable. In this study, we isolated cDNAs of starfish cyclin A and Cdc2, and monitored extensively the cell cycle dynamics of cyclin A and cyclin B levels and their associated Cdc2 kinase activity, Tyr phosphorylation of Cdc2, and Cdc25 phosphorylation states throughout meiotic and early embryonic cleavage cycles in vivo. In meiosis I, cyclin A was undetectable and cyclin B/Cdc2 alone exhibited histone H1 kinase activity, while thereafter both cyclin A/Cdc2 and cyclin B/Cdc2 kinase activity oscillated along with the cell cycle. Cyclin B-, but not cyclin A-, associated Cdc2 was subjected to regulation via Tyr phosphorylation, and phosphorylation states of Cdc25 correlated with cyclin B/Cdc2 kinase activity with some exceptions. Between meiosis I and II and at the pronucleus stage, cyclin A and B levels remained low, Cdc2 Tyr phosphorylation was undetectable, and Cdc25 remained phosphorylated depending on MAP kinase activity, showing a good correlation between these two stages. Upon fertilization of mature eggs, Cdc2 Tyr phosphorylation reappeared and Cdc25 was dephosphorylated. In the first cleavage cycle, under conditions which prevented Cdc25 activity, cyclin A/Cdc2 was activated with a normal time course and then cyclin B/Cdc2 was activated with a significant delay, resulting in the delayed completion of M-phase. Thus, in contrast to meiosis I, both cyclin A and cyclin B appear to be involved in the embryonic cleavage cycles. We propose that regulation of cyclin A/Cdc2 and cyclin B/Cdc2 is characteristic of meiotic and early cleavage cycles.

摘要

在海星中,受精自然发生在减数分裂I后期。然而,在未受精的情况下,卵母细胞完成减数分裂I和II,产生停滞在原核阶段的成熟卵子,这些卵子仍然具有可受精能力。在本研究中,我们分离出海星细胞周期蛋白A和Cdc2的cDNA,并在体内广泛监测了细胞周期蛋白A和细胞周期蛋白B水平的动态变化及其相关的Cdc2激酶活性、Cdc2的酪氨酸磷酸化以及Cdc25的磷酸化状态,贯穿减数分裂和早期胚胎分裂周期。在减数分裂I中,细胞周期蛋白A无法检测到,仅细胞周期蛋白B/Cdc2表现出组蛋白H1激酶活性,而此后细胞周期蛋白A/Cdc2和细胞周期蛋白B/Cdc2激酶活性都随细胞周期振荡。与细胞周期蛋白A相关的Cdc2不受酪氨酸磷酸化调控,而Cdc25的磷酸化状态与细胞周期蛋白B/Cdc2激酶活性相关,但有一些例外情况。在减数分裂I和II之间以及原核阶段,细胞周期蛋白A和B的水平保持较低,Cdc2的酪氨酸磷酸化无法检测到,并且Cdc25根据丝裂原活化蛋白激酶活性保持磷酸化状态,这两个阶段之间呈现出良好的相关性。成熟卵子受精后,Cdc2的酪氨酸磷酸化重新出现,Cdc25去磷酸化。在第一次分裂周期中,在阻止Cdc25活性的条件下,细胞周期蛋白A/Cdc2以正常时间进程被激活,然后细胞周期蛋白B/Cdc2被显著延迟激活,导致M期完成延迟。因此,与减数分裂I不同,细胞周期蛋白A和细胞周期蛋白B似乎都参与了胚胎分裂周期。我们提出,细胞周期蛋白A/Cdc2和细胞周期蛋白B/Cdc2的调控是减数分裂和早期分裂周期的特征。

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