Dumont Julien, Million Karine, Sunderland Kelsey, Rassinier Pascale, Lim Hyunjung, Leader Benjamin, Verlhac Marie-Hélène
Equipe Divisions Méiotiques Chez la Souris, UMR7622, CNRS, Université Pierre et Marie Curie-Paris 6, Bat C, 5e, 9 Quai Saint Bernard 75005, Paris, France.
Dev Biol. 2007 Jan 1;301(1):254-65. doi: 10.1016/j.ydbio.2006.08.044. Epub 2006 Aug 24.
Female meiotic divisions in higher organisms are asymmetric and lead to the formation of a large oocyte and small polar bodies. These asymmetric divisions are due to eccentric spindle positioning which, in the mouse, requires actin filaments. Recently Formin-2, a straight actin filaments nucleator, has been proposed to control spindle positioning, chromosome segregation as well as first polar body extrusion in mouse oocytes. We reexamine here the possible role of Formin-2 during mouse meiotic maturation by live videomicroscopy. We show that Formin-2 controls first meiotic spindle migration to the cortex but not chromosome congression or segregation. We also show that the lack of first polar body extrusion in fmn2(-/-) oocytes is not due to a lack of cortical differentiation or central spindle formation but to a defect in the late steps of cytokinesis. Indeed, Survivin, a component of the passenger protein complex, is correctly localized on the central spindle at anaphase in fmn2(-/-) oocytes. We show here that attempts of cytokinesis in these oocytes abort due to phospho-myosin II mislocalization.
高等生物中的雌性减数分裂是不对称的,会导致形成一个大的卵母细胞和小的极体。这些不对称分裂是由于纺锤体偏心定位所致,在小鼠中,这需要肌动蛋白丝。最近,有人提出Formin-2(一种直肌动蛋白丝成核剂)可控制小鼠卵母细胞中的纺锤体定位、染色体分离以及第一极体的排出。我们在此通过实时视频显微镜重新审视Formin-2在小鼠减数分裂成熟过程中的可能作用。我们发现Formin-2控制第一次减数分裂纺锤体向皮质迁移,但不控制染色体的汇聚或分离。我们还表明,fmn2(-/-)卵母细胞中第一极体排出的缺失不是由于皮质分化或中央纺锤体形成的缺乏,而是由于胞质分裂后期步骤中的缺陷。实际上,乘客蛋白复合物的一个组成部分Survivin在fmn2(-/-)卵母细胞的后期正确定位于中央纺锤体上。我们在此表明,这些卵母细胞中的胞质分裂尝试因磷酸化肌球蛋白II的错误定位而中止。