Acquisition of meiotic competence in growing mouse oocytes is controlled at both translational and posttranslational levels

被引:64
作者
deVantery, C
Stutz, A
Vassalli, JD
SchorderetSlatkine, S
机构
[1] UNIV GENEVA, HOP CANTONAL,DEPT GYNECOL,OBSTET & MATERNITE, CLIN STERIL & ENDOCRINOL GYNECOL, CH-1211 GENEVA 14, SWITZERLAND
[2] CTR MED UNIV GENEVA, DEPT MORPHOL, CH-1211 GENEVA 4, SWITZERLAND
关键词
D O I
10.1006/dbio.1997.8599
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Full-grown mouse oocytes spontaneously resume meiosis in vitro when released from their follicular environment. By contrast, growing oocytes are not competent to resume meiosis; the molecular basis of meiotic competence is not known. Entry into M phase of the eukaryotic cell cycle is controlled by MPF, a catalytically active complex comprising p34(cdc2) kinase and cyclin B. Incompetent oocytes contain levels of cyclin B comparable to those in competent oocytes, while their level of p34(cdc2) is markedly lower; p34(cdc2) accumulates abruptly at the end of oocyte growth, at the time of meiotic competence acquisition. We show here that this change in p34(cdc2) concentration is not secondary to a corresponding change in the concentration of the cognate mRNA, indicating that translational control may be involved. Microinjection of translatable p34(cdc2) mRNA into incompetent oocytes yielded high levels of the protein, but it did not lead to resumption of meiosis. Similarly, microinjection of cyclin B1 mRNA resulted in accumulation of the protein, but not in the acquisition of meiotic competence. By contrast, the microinjection of both p34(cdc2) and cyclin B1 mRNAs in incompetent oocytes induced histone H1 and MAP kinase activation, germinal vesicle breakdown, and entry into M-phase including the translational activation of a dormant mRNA. Thus, endogenous cyclin B1 in incompetent oocytes is not available for interaction with p34(cdc2), suggesting that a posttranslational event must occur to achieve meiotic competence. Microinjection of either p34(cdc2) or cyclin B1 mRNAs accelerated meiotic reinitiation of okadaic acid-treated incompetent oocytes. Taken together, these results suggest that acquisition of meiotic competence by mouse oocytes is regulated at both translational and posttranslational levels. (C) 1997 Academic Press.
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页码:43 / 54
页数:12
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