Na Jie, Zernicka-Goetz Magdalena
The Wellcome Trust/Cancer Research UK Gurdon Institute of Cancer and Developmental Biology and Department of Genetics, University of Cambridge, Cambridge CB2 1QR, United Kingdom.
Curr Biol. 2006 Jun 20;16(12):1249-54. doi: 10.1016/j.cub.2006.05.023.
The mature mammalian oocyte is highly polarized because asymmetrical spindle migration to the oocyte cortex ensures extrusion of small polar bodies in the two meiotic divisions, essential for generation of the large egg. Actin filaments, myosin motors, and formin-2, but not microtubules, are required for spindle migration. Here, we show that Cdc42, a key regulator of cytoskeleton and cell polarity in other systems , is essential for meiotic maturation and oocyte asymmetry. Disrupting CDC42 function by ectopic expression of its GTPase-defective mutants causes both halves of the first meiotic spindle to extend symmetrically toward opposing cortical regions and prevents an asymmetrical division. The elongated spindle has numerous astral-like microtubules, and aPKCzeta, normally associated with the spindle poles, is distributed along its length. Dynactin is displaced from kinetochores, consistently homologous chromosomes do not segregate, and polar body extrusion is prevented. Perturbing the function of aPKCzeta also causes elongation of the meiotic spindle but still permits spindle migration and polar body extrusion. Thus, at least two pathways appear to be downstream of CDC42: one affecting the actin cytoskeleton and required for migration of the meiotic spindle, and a second affecting the spindle microtubules in which aPKCzeta plays a role.
成熟的哺乳动物卵母细胞高度极化,因为不对称的纺锤体迁移至卵母细胞皮质可确保在两次减数分裂中挤出小的极体,这对生成大的卵子至关重要。纺锤体迁移需要肌动蛋白丝、肌球蛋白马达和formin-2,但不需要微管。在这里,我们表明,Cdc42作为其他系统中细胞骨架和细胞极性的关键调节因子,对减数分裂成熟和卵母细胞不对称性至关重要。通过异位表达其GTP酶缺陷型突变体来破坏Cdc42功能,会导致第一次减数分裂纺锤体的两半对称地向相对的皮质区域延伸,并阻止不对称分裂。拉长的纺锤体有许多星状微管,通常与纺锤体极相关的aPKCzeta沿其长度分布。动力蛋白从动粒上移位,同源染色体始终不分离,极体挤出受阻。干扰aPKCzeta的功能也会导致减数分裂纺锤体延长,但仍允许纺锤体迁移和极体挤出。因此,至少有两条途径似乎在Cdc42下游:一条影响肌动蛋白细胞骨架,是减数分裂纺锤体迁移所必需的;另一条影响纺锤体微管,其中aPKCzeta发挥作用。