Iwashita J, Hayano Y, Sagata N
Department of Biology, Faculty of Science, Kyushu University, Hakozaki 6-10-1, Fukuoka 812-8581, Japan.
Proc Natl Acad Sci U S A. 1998 Apr 14;95(8):4392-7. doi: 10.1073/pnas.95.8.4392.
In almost all animal species, immature oocytes are arrested naturally in the first meiotic prophase, with a large nucleus called the germinal vesicle. A number of previous studies showed that both activation of maturation/M phase-promoting factor (MPF) (assayed by semiquantitative cytological methods) and some other maturational events occur essentially normally in enucleated oocytes from many amphibian species and mice. Hence, for nearly three decades, it has generally been believed that nuclear material is dispensable for MPF activation and the meiotic cell cycle in vertebrate oocytes. Here, we have challenged this view by examining the histone H1 kinase activities and the molecular forms of MPF in experimentally manipulated Xenopus oocytes. We show that oocytes injected with nuclear material undergo much more rapid MPF activation and maturation than uninjected control oocytes. Conversely, enucleated oocytes, unlike nucleated counterparts, undergo only weak MPF activation in meiosis I and no detectable MPF reactivation in meiosis II, the latter accompanying inhibitory tyrosine phosphorylation of cdc2 kinase, the catalytic subunit of MPF. These results argue strongly that nuclear material is indispensable for the meiotic cell cycle, particularly MPF reactivation (or cdc2 tyrosine dephosphorylation) on entry into meiosis II, in Xenopus oocytes. The classical and general view may thus need reconsideration.
在几乎所有动物物种中,未成熟的卵母细胞自然停滞于第一次减数分裂前期,具有一个称为生发泡的大细胞核。此前的多项研究表明,在许多两栖动物物种和小鼠的去核卵母细胞中,成熟/促有丝分裂因子(MPF)的激活(通过半定量细胞学方法检测)以及一些其他成熟事件基本正常发生。因此,近三十年来,人们普遍认为核物质对于脊椎动物卵母细胞中MPF的激活和减数分裂细胞周期是可有可无的。在此,我们通过检测经实验操作的非洲爪蟾卵母细胞中的组蛋白H1激酶活性和MPF的分子形式,对这一观点提出了挑战。我们发现,注射了核物质的卵母细胞比未注射的对照卵母细胞经历更快的MPF激活和成熟。相反,与有核的对应物不同,去核卵母细胞在减数分裂I中仅经历微弱的MPF激活,在减数分裂II中未检测到MPF的再激活,后者伴随着MPF催化亚基cdc2激酶的抑制性酪氨酸磷酸化。这些结果有力地表明,核物质对于非洲爪蟾卵母细胞的减数分裂细胞周期是不可或缺的,特别是在进入减数分裂II时MPF的再激活(或cdc2酪氨酸去磷酸化)。因此,经典的普遍观点可能需要重新审视。