Cukurcam S, Hegele-Hartung C, Eichenlaub-Ritter U
Research Laboratories of Schering AG, Berlin, Germany.
Hum Reprod. 2003 Sep;18(9):1908-17. doi: 10.1093/humrep/deg378.
Follicular fluid meiosis-activating sterol (FF-MAS) overcomes hypoxanthine (HX)-mediated meiotic arrest in mammalian oocytes.
In order to determine whether chromosome segregation was normal in oocytes matured in FF-MAS, the development, chromosomal constitution and chromosome alignment was analysed in spontaneously matured as well as HX-arrested mouse oocytes cultured in the absence or presence of FF-MAS.
FF-MAS-induced meiotic maturation was significantly less effective compared with spontaneous maturation in supporting cytokinesis ( approximately 40 and approximately 90% polar body formation respectively). The majority of oocytes stimulated by FF-MAS to overcome the HX block developed to metaphase II (MII), but 23.4% of meiosis II oocytes were diploid. Chromosomes were well aligned on the spindle, and hyperploidy was low in spontaneously matured oocytes and HX-arrested oocytes cultured with or without FF-MAS. Unexpectedly, almost 40% of spontaneously matured MII oocytes contained chromatids/monads. Precocious loss of chromatid cohesion was significantly reduced in spontaneously matured as well as HX-arrested oocytes cultured in the presence of FF-MAS but not lanosterol.
FF-MAS induces full nuclear maturation to MII, and chromosomes segregate with high fidelity. However, in delayed FF-MAS-stimulated meiotic maturation, anaphase I may occur in the absence of cytokinesis. FF-MAS appears to protect mammalian oocytes from precocious chromatid segregation.
卵泡液减数分裂激活甾醇(FF-MAS)可克服次黄嘌呤(HX)介导的哺乳动物卵母细胞减数分裂阻滞。
为了确定在FF-MAS中成熟的卵母细胞染色体分离是否正常,分析了在有无FF-MAS的情况下培养的自发成熟以及HX阻滞的小鼠卵母细胞的发育、染色体组成和染色体排列。
与自发成熟相比,FF-MAS诱导的减数分裂成熟在支持胞质分裂方面效果显著较差(分别约40%和约90%的极体形成率)。大多数受FF-MAS刺激以克服HX阻滞的卵母细胞发育至中期II(MII),但23.4%的减数分裂II期卵母细胞为二倍体。染色体在纺锤体上排列良好,在有无FF-MAS培养的自发成熟卵母细胞和HX阻滞的卵母细胞中多倍体率较低。出乎意料的是,近40%的自发成熟MII期卵母细胞含有染色单体/单体。在有FF-MAS而非羊毛甾醇存在的情况下培养的自发成熟以及HX阻滞的卵母细胞中,染色单体凝聚过早丧失的情况显著减少。
FF-MAS诱导卵母细胞完全核成熟至MII期,且染色体以高保真度分离。然而,在延迟的FF-MAS刺激的减数分裂成熟过程中,后期I可能在没有胞质分裂的情况下发生。FF-MAS似乎可保护哺乳动物卵母细胞免受染色单体过早分离的影响。