Huchon D, Rime H, Jessus C, Ozon R
Laboratoire de Physiologie de la Reproduction, INRA/CNRS-URA 1449, Université P et M Curie, Paris, France.
Biol Cell. 1993;77(2):133-41. doi: 10.1016/s0248-4900(05)80181-9.
A cytological analysis was performed in order to determine how the formation of the metaphase I- and metaphase II-spindles is dependent upon p34cdc2 kinase activity and protein synthesis during the meiotic maturation of Xenopus oocytes. The p34cdc2 kinase activity increases abruptly during the prophase-prometaphase I transition, then drops to a minimum level at the metaphase I/anaphase I transition and further increases again until reaching a maximum stable level at metaphase II. The injection of an indestructible cyclin B into oocytes arrests the maturation process at the onset of anaphase I and prevents the re-increase of p34cdc2 activity which accompanies normal entry into metaphase II. Inhibition of protein synthesis between the germinal vesicle breakdown and the onset of metaphase I spindle induces exit from M-phase and leads to an 'interphase-like' state characterized by the organization of nuclear-like structures. In contrast, inhibition of protein synthesis at metaphase II stage does not affect the metaphase II spindle nor p34cdc2 activity, indicating that metaphase I- and metaphase II-spindles are not regulated by the same effectors. When protein synthesis is inhibited before induction of M-phase by MPF transfer, it prevents the formation of the metaphase I spindle, despite a transient elevated level of p34cdc2 activity. To dissociate the role of protein synthesis and of p34cdc2 kinase activity, the indestructible cyclin B was microinjected in the absence of protein synthesis. This allows the in vivo maintenance of a stable p34cdc2 activity.(ABSTRACT TRUNCATED AT 250 WORDS)
为了确定非洲爪蟾卵母细胞减数分裂成熟过程中,减数第一次分裂中期和减数第二次分裂中期纺锤体的形成如何依赖于p34cdc2激酶活性和蛋白质合成,进行了细胞学分析。p34cdc2激酶活性在减数第一次分裂前期向中期转变时突然增加,然后在减数第一次分裂中期/后期转变时降至最低水平,并再次进一步增加,直至在减数第二次分裂中期达到最大稳定水平。向卵母细胞中注射不可降解的细胞周期蛋白B会在减数第一次分裂后期开始时阻止成熟过程,并阻止正常进入减数第二次分裂时伴随的p34cdc2活性再次增加。在生发泡破裂和减数第一次分裂中期纺锤体开始形成之间抑制蛋白质合成会导致细胞退出M期,并导致一种“间期样”状态,其特征是形成类核结构。相反,在减数第二次分裂阶段抑制蛋白质合成不会影响减数第二次分裂纺锤体或p34cdc2活性,这表明减数第一次分裂中期和减数第二次分裂中期纺锤体不受相同效应器的调节。当在通过MPF转移诱导M期之前抑制蛋白质合成时,尽管p34cdc2活性有短暂升高,但仍会阻止减数第一次分裂中期纺锤体的形成。为了区分蛋白质合成和p34cdc2激酶活性的作用,在没有蛋白质合成的情况下显微注射不可降解的细胞周期蛋白B。这使得p34cdc2活性能够在体内维持稳定。(摘要截短至250字)