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与完全成熟的小鼠生发泡(GV)卵母细胞减数分裂能力相关的转录活性。

Transcriptional activity associated with meiotic competence in fully grown mouse GV oocytes.

作者信息

Liu Honglin, Aoki Fugaku

机构信息

Department of Integrated Biosciences, Graduate School of Frontier Sciences, University of Tokyo, Kashiwa, Chiba 277-8571, Japan.

出版信息

Zygote. 2002 Nov;10(4):327-32. doi: 10.1017/s0967199402004069.

Abstract

The involvement of cumulus cells and chromatin organisation in transcriptional activity was investigated. In addition, the relationship between transcriptional activity and meiotic competence in fully grown mouse oocytes was surveyed. Transcriptional activity was detected in fully grown oocytes in which chromatin did not surround the nucleolus in the germinal vesicle (NSN-type oocytes), but not in oocytes in which chromatin surrounded the nucleolus (SN-type oocytes). Cumulus cells seemed to downregulate transcriptional activity in NSN-type oocytes, since transcriptional activity was 3 times greater in the denuded NSN-type oocytes free of cumulus cells (DO oocytes) than in NSN-type oocytes enclosed in cumulus cells (COC oocytes). Higher transcriptional activity corresponded to lower germinal vesicle breakdown (GVB) competence of fully grown oocytes in culture. Although GVB occurred in nearly all (99%) the SN-type oocytes, it occurred in 88% of COC/NSN-type oocytes (cumulus-oocyte complex with SN-type configuration) and in 61% of DO/NSN-type oocytes (denuded oocytes with NSN-type configuration). There was a negative correlation between transcriptional activity and the capacity of a cell to complete the progression to the second metaphase (MII). In GVB oocytes, the percentage of first polar body (PBI) extrusion differed among COC/NSN-type (81%), DO/SN-type (66%), COC/NSN-type (47%) and DO/NSN-type (29%) oocytes. After activation with 10 mM Sr2+, the frequency of parthenogenetic activation was greater in SN-type oocytes (46.9%) than in transcriptionally active NSN-type oocytes (27.5%). These results suggest that transcriptional activity has a detrimental effect on the competence of meiotic maturation and subsequent activation in fully grown GV oocytes. Alternatively, active transcription in the fully grown oocytes suggests that they are still in the process of synthesising substances required for meiotic maturation and are not yet competent for these processes.

摘要

研究了卵丘细胞和染色质组织在转录活性中的作用。此外,还调查了完全成熟的小鼠卵母细胞中转录活性与减数分裂能力之间的关系。在生发泡中染色质不围绕核仁的完全成熟卵母细胞(NSN型卵母细胞)中检测到转录活性,但在染色质围绕核仁的卵母细胞(SN型卵母细胞)中未检测到。卵丘细胞似乎下调了NSN型卵母细胞中的转录活性,因为不含卵丘细胞的裸NSN型卵母细胞(DO卵母细胞)中的转录活性比包裹在卵丘细胞中的NSN型卵母细胞(COC卵母细胞)高3倍。较高的转录活性对应于培养中完全成熟卵母细胞较低的生发泡破裂(GVB)能力。虽然几乎所有(99%)的SN型卵母细胞都发生了GVB,但88%的COC/NSN型卵母细胞(具有SN型构型的卵丘-卵母细胞复合体)和61%的DO/NSN型卵母细胞(具有NSN型构型的裸卵母细胞)发生了GVB。转录活性与细胞完成向第二次中期(MII)进展的能力之间存在负相关。在GVB卵母细胞中,第一极体(PBⅠ)排出的百分比在COC/NSN型(81%)、DO/SN型(66%)、COC/NSN型(47%)和DO/NSN型(29%)卵母细胞中有所不同。用10 mM Sr2+激活后,孤雌激活的频率在SN型卵母细胞(46.9%)中高于转录活跃的NSN型卵母细胞(27.5%)。这些结果表明,转录活性对完全成熟的GV卵母细胞减数分裂成熟和随后激活的能力有不利影响。或者,完全成熟卵母细胞中的活跃转录表明它们仍在合成减数分裂成熟所需的物质,并且尚未具备进行这些过程的能力。

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