Stevens Naomi R, Raposo Alexandre A S F, Basto Renata, St Johnston Daniel, Raff Jordan W
The Gurdon Institute, Tennis Court Road, Cambridge, UK.
Curr Biol. 2007 Sep 4;17(17):1498-503. doi: 10.1016/j.cub.2007.07.060. Epub 2007 Aug 23.
Centrosome asymmetry plays a key role in ensuring the asymmetric division of Drosophila neural stem cells (neuroblasts [NBs]) and male germline stem cells (GSCs) [1-3]. In both cases, one centrosome is anchored close to a specific cortical region during interphase, thus defining the orientation of the spindle during the ensuing mitosis. To test whether asymmetric centrosome behavior is a general feature of stem cells, we have studied female GSCs, which divide asymmetrically, producing another GSC and a cystoblast. The cystoblast then divides and matures into an oocyte, a process in which centrosomes exhibit a series of complex behaviors proposed to play a crucial role in oogenesis [4-6]. We show that the interphase centrosome does not define spindle orientation in female GSCs and that DSas-4 mutant GSCs [7], lacking centrioles and centrosomes, invariably divide asymmetrically to produce cystoblasts that proceed normally through oogenesis-remarkably, oocyte specification, microtubule organization, and mRNA localization are all unperturbed. Mature oocytes can be fertilized, but embryos that cannot support centriole replication arrest very early in development. Thus, centrosomes are dispensable for oogenesis but essential for early embryogenesis. These results reveal that asymmetric centrosome behavior is not an essential feature of stem cell divisions.
中心体不对称性在确保果蝇神经干细胞(成神经细胞[NBs])和雄性生殖系干细胞(GSCs)的不对称分裂中起关键作用[1-3]。在这两种情况下,一个中心体在间期锚定在靠近特定皮质区域的位置,从而确定随后有丝分裂期间纺锤体的方向。为了测试不对称中心体行为是否是干细胞的普遍特征,我们研究了雌性GSCs,它们进行不对称分裂,产生另一个GSC和一个成囊细胞。成囊细胞随后分裂并成熟为卵母细胞,在这个过程中,中心体表现出一系列复杂行为,这些行为被认为在卵子发生中起关键作用[4-6]。我们发现,间期中心体在雌性GSCs中并不确定纺锤体方向,并且缺乏中心粒和中心体的DSas-4突变体GSCs[7]总是不对称分裂产生成囊细胞,这些成囊细胞在卵子发生过程中正常进行——值得注意的是,卵母细胞特化、微管组织和mRNA定位均未受干扰。成熟卵母细胞可以受精,但不能支持中心粒复制的胚胎在发育早期就会停滞。因此,中心体对于卵子发生是可有可无的,但对于早期胚胎发生是必不可少的。这些结果表明,不对称中心体行为不是干细胞分裂的必要特征。