首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Mechanisms by which a Lack of Germinal Vesicle (GV) Material Causes Oocyte Meiotic Defects: A Study Using Oocytes Manipulated to Replace GV with Primary Spermatocyte Nuclei
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Mechanisms by which a Lack of Germinal Vesicle (GV) Material Causes Oocyte Meiotic Defects: A Study Using Oocytes Manipulated to Replace GV with Primary Spermatocyte Nuclei

机译:缺少胚泡(GV)物质导致卵母细胞减数分裂缺陷的机制:使用卵母细胞经操纵以原代精母细胞核替代GV的研究

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摘要

Oocytes with germinal vesicles (GVs) replaced with somatic nuclei exhibit meiotic abnormalities. Although this suggests an exclusive role for GV material in meiosis, mechanisms by which a lack of GV material causes meiotic defects are unknown. Knowledge of these mechanisms will help us to understand meiotic control, nuclear-cytoplasmic interactions, and cellular reprogramming. This study showed that although oocytes with prometaphase I chromosomes replaced with primary spermatocyte nuclei (PSN) did not, oocytes with GV replaced with PSN (PSG oocytes) did display meiotic defects. Among the defects, insufficient chromosome condensation with chromosome bridges was associated with spindle abnormalities. Abnormal spindle migration, cortical nonpolarization, and the aberrant spindle caused randomly positioning of cleavage furrows, leading to large first polar bodies (PB1) and unequal allocation of chromosomes and mitogen-activated protein kinases (MAPK) between oocyte and PB1. Spindle assembly checkpoint was activated but did not stop the incorrect division. The unequal MAPK allocation resulted in differences in pronuclear formation and PB1 degeneration; oocytes receiving more MAPK were more capable of forming pronuclear rudiments, whereas PB1 receiving more MAPK degenerated sooner than those that received less. Because none of the PSG oocytes or the enucleated GV oocytes injected with sperm heads showed cortical polarization in spite of chromosome localization close to the oolemma and because the PSG oocytes receiving more MAPK could form only pronuclear rudiments and not normal pronuclei, we suggest that the GV material plays essential roles in polarization and pronuclear formation on top of those played by chromosomes or MAPK. In conclusion, using PSG oocytes as models, this study has revealed the primary pathways by which a lack of GV material cause meiotic defects, laying a foundation for future research on the role of GV material in oocyte meiotic control.
机译:胚泡(GV)替换为体细胞核的卵母细胞表现出减数分裂异常。尽管这表明GV物质在减数分裂中具有排他性作用,但缺少GV物质导致减数分裂缺陷的机制尚不清楚。这些机制的知识将帮助我们理解减数分裂控制,核质相互作用和细胞重编程。这项研究表明,尽管前中期I染色体被原代精子细胞核(PSN)取代的卵母细胞没有,但GV被PSN取代的卵母细胞(PSG卵母细胞)确实表现出减数分裂缺陷。在缺陷中,染色体与染色体桥的凝结不足与纺锤体异常有关。异常的纺锤体迁移,皮层非极化和异常的纺锤体引起卵裂沟的随机定位,从而导致较大的第一极体(PB1)以及卵母细胞和PB1之间的染色体和有丝分裂原活化蛋白激酶(MAPK)分配不均。主轴组件检查点已激活,但没有停止不正确的分割。 MAPK分配不均会导致前核形成和PB1变性的差异。接受更多MAPK的卵母细胞更有能力形成核核残基,而接受更多MAPK的PB1则比接受较少MAPK的卵母细胞退化得更快。因为尽管染色体定位靠近血肿,但注射了精子头的PSG卵母细胞或去核的GV卵母细胞都没有显示皮质极化,并且由于接受更多MAPK的PSG卵母细胞只能形成原核,而不是正常的原核,因此我们建议使用GV在染色体或MAPK所发挥的作用之外,该物质在极化和前核形成中起着至关重要的作用。总之,本研究以PSG卵母细胞为模型,揭示了缺乏GV物质导致减数分裂缺陷的主要途径,为将来研究GV物质在卵母细胞减数分裂控制中的作用奠定了基础。

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