Cao Yan, Du Juan, Chen Dandan, Wang Qian, Zhang Nana, Liu Xiaoyun, Liu Xiaoyu, Weng Jing, Liang Yuanjing, Ma Wei
a Department of Histology and Embryology , School of Basic Medical Sciences, Capital Medical University , Beijing , China.
b Experimental Center for Basic Medical Teaching, School of Basic Medical Sciences, Capital Medical University , Beijing , China.
Cell Cycle. 2016 Oct;15(19):2608-2618. doi: 10.1080/15384101.2016.1208869. Epub 2016 Jul 19.
Staufen2 (Stau2) is a double-stranded RNA-binding protein involved in cell fate decision by regulating mRNA transport, mRNA stability, translation, and ribonucleoprotein assembly. Little is known about Stau2 expression and function in mammalian oocytes during meiosis. Herein we report the sub-cellular distribution and function of Stau2 in mouse oocyte meiosis. Western blot analysis revealed high and stable expression of Stau2 in oocytes from germinal vesicle (GV) to metaphase II (MII). Immunofluorescence showed that Stau2 was evenly distributed in oocytes at GV stage, and assembled as filaments after germinal vesicle breakdown (GVBD), particularly, colocalized with spindle at MI and MII. Stau2 was disassembled when microtubules were disrupted with nocodazole, on the other hand, when MTs were stabilized with taxol, Stau2 was not colocalized with the stabilized microtubules, but aggregated around the chromosomes array, indicating Stau2 assembly and colocalization with microtubules require both microtubule integrity and its normal dynamics. During interphase and mitosis of BHK and MEF cells, Stau2 was not distributed on microtubules, but colocalized with cis-Golgi marker GM130, implying its association with Golgi complex but not the spindle in fully differentiated somatic cells. Specific morpholino oligo-mediated Stau2 knockdown disrupted spindle formation, chromosome alignment and microtubule-kinetochore attachment in oocytes. The majority oocytes were arrested at MI stage, with bright MAD1 at kinetochores, indicating activation of spindle assembly checkpoint (SAC). Some oocytes were stranded at telophase I (TI), implying suppressed first polar body extrution. Together these data demonstrate that Stau2 is required for spindle formation and timely meiotic progression in mouse oocytes.
Staufen2(Stau2)是一种双链RNA结合蛋白,通过调节mRNA运输、mRNA稳定性、翻译和核糖核蛋白组装参与细胞命运决定。关于Stau2在哺乳动物卵母细胞减数分裂过程中的表达和功能知之甚少。在此,我们报道了Stau2在小鼠卵母细胞减数分裂中的亚细胞分布和功能。蛋白质免疫印迹分析显示,从生发泡(GV)期到中期II(MII),Stau2在卵母细胞中高表达且表达稳定。免疫荧光显示,Stau2在GV期卵母细胞中均匀分布,在生发泡破裂(GVBD)后组装成细丝,特别是在MI和MII期与纺锤体共定位。当用诺考达唑破坏微管时,Stau2会解体,另一方面,当用紫杉醇稳定微管时,Stau2不与稳定的微管共定位,而是聚集在染色体阵列周围,这表明Stau2与微管的组装和共定位需要微管的完整性及其正常动态。在BHK和MEF细胞的间期和有丝分裂过程中,Stau2不分布在微管上,而是与顺式高尔基体标记物GM130共定位,这意味着它在完全分化的体细胞中与高尔基体复合体相关,而不是与纺锤体相关。特异性吗啉代寡核苷酸介导的Stau2敲低破坏了卵母细胞中的纺锤体形成、染色体排列和微管-动粒附着。大多数卵母细胞停滞在MI期,动粒处有明亮的MAD1,表明纺锤体组装检查点(SAC)激活。一些卵母细胞停滞在第一次减数分裂末期(TI),这意味着第一极体排出受到抑制。这些数据共同表明,Stau2是小鼠卵母细胞纺锤体形成和减数分裂及时进行所必需的。