David Nicolas B, Martin Charlotte A, Segalen Marion, Rosenfeld François, Schweisguth François, Bellaïche Yohanns
Institute Curie, CNRS UMR 144, 26 rue d'Ulm, Paris 75248, France.
Nat Cell Biol. 2005 Nov;7(11):1083-90. doi: 10.1038/ncb1319.
Localization and activation of heterotrimeric G proteins have a crucial role during asymmetric cell division. The asymmetric division of the Drosophila sensory precursor cell (pl) is polarized along the antero-posterior axis by Frizzled signalling and, during this division, activation of Galphai depends on Partner of Inscuteable (Pins). We establish here that Ric-8, which belongs to a family of guanine nucleotide-exchange factors for Galphai, regulates cortical localization of the subunits Galphai and Gbeta13F. Ric-8, Galphai and Pins are not necessary for the control of the anteroposterior orientation of the mitotic spindle during pl cell division downstream of Frizzled signalling, but they are required for maintainance of the spindle within the plane of the epithelium. On the contrary, Frizzled signalling orients the spindle along the antero-posterior axis but also tilts it along the apico-basal axis. Thus, Frizzled and heterotrimeric G-protein signalling act in opposition to ensure that the spindle aligns both in the plane of the epithelium and along the tissue polarity axis.
异源三聚体G蛋白的定位和激活在不对称细胞分裂过程中起着至关重要的作用。果蝇感觉前体细胞(pl)的不对称分裂通过卷曲蛋白信号沿前后轴极化,并且在这个分裂过程中,Gαi的激活依赖于无翅相关转录共激活因子的伙伴(Pins)。我们在此确定,属于Gαi鸟嘌呤核苷酸交换因子家族的Ric-8调节Gαi和Gβ13F亚基的皮质定位。在卷曲蛋白信号下游的pl细胞分裂过程中,Ric-8、Gαi和Pins对于控制有丝分裂纺锤体的前后方向不是必需的,但它们对于纺锤体在上皮平面内的维持是必需的。相反,卷曲蛋白信号使纺锤体沿前后轴定向,但也使其沿顶-基轴倾斜。因此,卷曲蛋白和异源三聚体G蛋白信号以相反的方式起作用,以确保纺锤体既在上皮平面内又沿组织极性轴排列。