Sanfins Alexandra, Lee Gloria Y, Plancha Carlos E, Overstrom Eric W, Albertini David F
Department of Anatomy and Cellular Biology, Tufts University School of Medicine, Boston, Massachusetts 02111, USA.
Biol Reprod. 2003 Dec;69(6):2059-67. doi: 10.1095/biolreprod.103.020537. Epub 2003 Aug 20.
To better understand the differences in cytoskeletal organization between in vivo (IVO) and in vitro (IVM) matured oocytes, we analyzed remodeling of the centrosome-microtubule complex in IVO and IVM mouse oocytes. Fluorescence imaging revealed dramatic differences in meiotic spindle assembly and organization between these two populations. Metaphase spindles at both meiosis I (M-I) and meiosis II (M-II) in IVO oocytes were compact, displayed focused spindle poles with distinct gamma-tubulin foci, and were composed of acetylated microtubules. In contrast, IVM oocytes exhibited barrel-shaped spindles with fewer acetylated microtubules and gamma-tubulin diffusely distributed throughout the spindle proper. With respect to meiotic progression, IVO oocytes were more synchronous in the rate and extent of anaphase to telophase of M-I and first polar body emission than were IVM counterparts. Furthermore, IVO oocytes showed a twofold increase in cytoplasmic microtubule organizing centers (MTOCs), and constitutive MTOC proteins (gamma-tubulin and pericentrin) were excluded from the first polar body. Inclusion of MTOC constitutive proteins in the polar body and diminished number of cytoplasmic MTOCs was observed in IVM oocytes. These findings were corroborated in IVO oocytes obtained from naturally ovulated and spontaneously cycling mice and highlight a fundamental distinction in the spatial and temporal regulation of microtubule dynamics between IVO and IVM oocytes
为了更好地理解体内(IVO)成熟卵母细胞和体外(IVM)成熟卵母细胞之间细胞骨架组织的差异,我们分析了IVO和IVM小鼠卵母细胞中中心体 - 微管复合体的重塑。荧光成像显示这两个群体在减数分裂纺锤体组装和组织方面存在显著差异。IVO卵母细胞减数分裂I(M-I)和减数分裂II(M-II)的中期纺锤体紧密,纺锤体极聚焦,有明显的γ-微管蛋白焦点,并且由乙酰化微管组成。相比之下,IVM卵母细胞表现出桶状纺锤体,乙酰化微管较少,γ-微管蛋白在整个纺锤体中弥漫分布。关于减数分裂进程,IVO卵母细胞在M-I后期到末期的速率和程度以及第一极体排放方面比IVM卵母细胞更同步。此外,IVO卵母细胞的细胞质微管组织中心(MTOC)增加了两倍,组成型MTOC蛋白(γ-微管蛋白和中心粒外周蛋白)被排除在第一极体之外。在IVM卵母细胞中观察到极体中包含MTOC组成型蛋白且细胞质MTOC数量减少。这些发现在用自然排卵和自发排卵的小鼠获得的IVO卵母细胞中得到了证实,并突出了IVO和IVM卵母细胞在微管动力学时空调节方面的根本区别。