Speicher Stephan, Fischer Anja, Knoblich Juergen, Carmena Ana
Instituto de Neurociencias de Alicante, Consejo Superior de Investigaciones Científicas/University Miguel Hernandez, Sant Joan d'Alacant, 03550 Alicante, Spain.
Curr Biol. 2008 Jun 3;18(11):831-7. doi: 10.1016/j.cub.2008.04.072. Epub 2008 May 22.
Asymmetric cell division is a conserved mechanism to generate cellular diversity during animal development and a key process in cancer and stem cell biology. Despite the increasing number of proteins characterized, the complex network of proteins interactions established during asymmetric cell division is still poorly understood. This suggests that additional components must be contributing to orchestrate all the events underlying this tightly modulated process. The PDZ protein Canoe (Cno) and its mammalian counterparts AF-6 and Afadin are critical to regulate intracellular signaling and to organize cell junctions throughout development. Here, we show that Cno functions as a new effector of the apical proteins Inscuteable (Insc)-Partner of Inscuteable (Pins)-Galphai during the asymmetric division of Drosophila neuroblasts (NBs). Cno localizes apically in metaphase NBs and coimmunoprecipitates with Pins in vivo. Furthermore, Cno functionally interacts with the apical proteins Insc, Galphai, and Mushroom body defect (Mud) to generate correct neuronal lineages. Failures in muscle and heart lineages are also detected in cno mutant embryos. Our results strongly support a new function for Cno regulating key processes during asymmetric NB division: the localization of cell-fate determinants, the orientation of the mitotic spindle, and the generation of unequal-sized daughter cells.
不对称细胞分裂是动物发育过程中产生细胞多样性的一种保守机制,也是癌症和干细胞生物学中的关键过程。尽管已鉴定的蛋白质数量不断增加,但在不对称细胞分裂过程中建立的复杂蛋白质相互作用网络仍知之甚少。这表明,必定有其他成分参与协调这一严格调控过程的所有相关事件。PDZ蛋白Canoe(Cno)及其哺乳动物对应物AF-6和Afadin对于调节细胞内信号传导以及在整个发育过程中组织细胞连接至关重要。在此,我们表明,在果蝇神经母细胞(NBs)的不对称分裂过程中,Cno作为顶端蛋白Inscuteable(Insc)-Inscuteable的伙伴(Pins)-Galphai的新效应物发挥作用。Cno在中期NBs中定位于顶端,并在体内与Pins进行共免疫沉淀。此外,Cno在功能上与顶端蛋白Insc、Galphai和蘑菇体缺陷蛋白(Mud)相互作用,以产生正确的神经元谱系。在cno突变体胚胎中也检测到肌肉和心脏谱系的缺陷。我们的结果有力地支持了Cno在调节不对称NB分裂过程中的关键过程方面具有新功能:细胞命运决定因子的定位、有丝分裂纺锤体的定向以及不等大子细胞的产生。