Waksman Institute and Department of Genetics, Rutgers, the State University of New Jersey, 190 Frelinghuysen RD, Piscataway NJ 08854-8020, USA.
J Cell Sci. 2011 Nov 15;124(Pt 22):3797-810. doi: 10.1242/jcs.084855. Epub 2011 Nov 18.
RanGTP is important for chromosome-dependent spindle assembly in Xenopus extracts. Here we report on experiments to determine the role of the Ran pathway on microtubule dynamics in Drosophila oocytes and embryos. Females expressing a dominant-negative form of Ran have fertility defects, suggesting that RanGTP is required for normal fertility. This is not, however, because of a defect in acentrosomal meiotic spindle assembly. Therefore, RanGTP does not appear to be essential or sufficient for the formation of the acentrosomal spindle. Instead, the most important function of the Ran pathway in spindle assembly appears to be in the tapering of microtubules at the spindle poles, which might be through regulation of proteins such as TACC and the HURP homolog, Mars. One consequence of this spindle organization defect is an increase in the nondisjunction of achiasmate chromosomes. However, the meiotic defects are not severe enough to cause the decreased fertility. Reductions in fertility occur because RanGTP has a role in microtubule assembly that is not directly nucleated by the chromosomes. This includes microtubules nucleated from the sperm aster, which are required for pronuclear fusion. We propose that following nuclear envelope breakdown, RanGTP is released from the nucleus and creates a cytoplasm that is activated for assembling microtubules, which is important for processes such as pronuclear fusion. Around the chromosomes, however, RanGTP might be redundant with other factors such as the chromosome passenger complex.
RanGTP 对于爪蟾提取物中的染色体依赖的纺锤体组装很重要。在这里,我们报告了实验结果,以确定 Ran 途径在果蝇卵母细胞和胚胎中的微管动力学中的作用。表达显性失活形式的 Ran 的雌性具有生育缺陷,表明 RanGTP 是正常生育所必需的。然而,这并不是因为无中心体减数分裂纺锤体组装的缺陷。因此,RanGTP 似乎不是形成无中心体纺锤体的必需或充分条件。相反,Ran 途径在纺锤体组装中的最重要功能似乎在于纺锤体极的微管变细,这可能是通过调节 TACC 和 HURP 同源物 Mars 等蛋白质来实现的。这种纺锤体组织缺陷的一个后果是增加了不分离的同源染色体。然而,减数分裂缺陷还不足以导致生育力下降。生育力的降低是因为 RanGTP 在微管组装中具有染色体直接起始的作用。这包括来自精子星体的微管,它们是核融合所必需的。我们提出,核膜破裂后,RanGTP 从核中释放出来,并产生一种激活微管组装的细胞质,这对于核融合等过程很重要。然而,在染色体周围,RanGTP 可能与其他因素(如染色体乘客复合物)冗余。