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首页> 外文期刊>Molecular reproduction and development >Small GTPase RhoA is required for ooplasmic segregation and spindle rotation, but not for spindle organization and chromosome separation during mouse oocyte maturation, fertilization, and early cleavage
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Small GTPase RhoA is required for ooplasmic segregation and spindle rotation, but not for spindle organization and chromosome separation during mouse oocyte maturation, fertilization, and early cleavage

机译:卵质分离和纺锤体旋转需要小的GTPase RhoA,但在小鼠卵母细胞成熟,受精和早期分裂过程中纺锤体组织和染色体分离则不需要

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摘要

RhoA, a small GTPase, plays versatile roles in many aspects of cell function such as stress fiber formation, cytokinesis, and cell polarization. In this study, we investigated the subcellular localization of RhoA and its possible roles during oocyte maturation and fertilization. RhoA was localized in the cytoplasm of eggs from the germinal vesicle (GV) stage to 2-cell stage, especially concentrating in the midbody of telophase spindle when oocyte extruded PB1 and PB2. The RhoA kinases (ROCKs) specific inhibitor Y-27632 blocked GV breakdown (GVBD) and first polar body extrusion, but did not affect apparatus formation and anaphase/telophase I entry. Anti-RhoA antibody microinjection into the oocytes showed similar results. RhoA inhibitor caused abnormal organization of microfilaments, failure of spindle rotation, PB2 extrusion as well as cleavage furrow formation, while sister chromatid separation was not affected. Microinjection of RhoA antibody also blocked PB2 emission. Our findings indicate that RhoA, by regulating microfilament organization, regulates several important events including GVBD, polar body emission, spindle rotation, and cleavage.
机译:RhoA是一种小GTP酶,在细胞功能的许多方面(如应激纤维形成,胞质分裂和细胞极化)起着多种作用。在这项研究中,我们调查了RhoA的亚细胞定位及其在卵母细胞成熟和受精过程中的可能作用。 RhoA定位在从生小泡(GV)阶段到2细胞阶段的卵细胞质中,尤其是卵母细胞挤出PB1和PB2时集中在末期纺锤体中部。 RhoA激酶(ROCKs)特异性抑制剂Y-27632阻止了GV分解(GVBD)和第一极体挤出,但不影响仪器的形成和I期的末期。将抗RhoA抗体显微注射到卵母细胞中显示了相似的结果。 RhoA抑制剂引起微丝的异常组织,纺锤体旋转失败,PB2挤出以及卵裂沟的形成,而姐妹染色单体分离不受影响。显微注射RhoA抗体也阻断了PB2的发射。我们的发现表明,RhoA通过调节微丝组织来调节几个重要事件,包括GVBD,极体发射,纺锤体旋转和分裂。

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