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Distinct roles of Gαi and Gβ13F subunits of the heterotrimeric G protein complex in the mediation of Drosophila neuroblast asymmetric divisions

机译:三聚体G蛋白复合物的Gαi和Gβ13F亚基在果蝇神经母细胞不对称分裂的介导中的不同作用

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摘要

The asymmetric division of Drosophila neuroblasts involves the basal localization of cell fate determinants and the generation of an asymmetric, apicobasally oriented mitotic spindle that leads to the formation of two daughter cells of unequal size. These features are thought to be controlled by an apically localized protein complex comprising of two signaling pathways: Bazooka/Drosophila atypical PKC/Inscuteable/DmPar6 and Partner of inscuteable (Pins)/Gαi; in addition, Gβ13F is also required. However, the role of Gαi and the hierarchical relationship between the G protein subunits and apical components are not well defined. Here we describe the isolation of Gαi mutants and show that Gαi and Gβ13F play distinct roles. Gαi is required for Pins to localize to the cortex, and the effects of loss of Gαi or pins are highly similar, supporting the idea that Pins/Gαi act together to mediate various aspects of neuroblast asymmetric division. In contrast, Gβ13F appears to regulate the asymmetric localization/stability of all apical components, and Gβ13F loss of function exhibits phenotypes resembling those seen when both apical pathways have been compromised, suggesting that it acts upstream of the apical pathways. Importantly, our results have also revealed a novel aspect of apical complex function, that is, the two apical pathways act redundantly to suppress the formation of basal astral microtubules in neuroblasts.
机译:果蝇成神经细胞的不对称分裂涉及细胞命运决定簇的基础定位,以及不对称,根尖茎定向的有丝分裂纺锤体的产生,导致形成两个大小不等的子代细胞。这些特征被认为是由包含两个信号传导途径的根尖定位的蛋白质复合物控制的:火箭筒/果蝇非典型PKC / Inscuteable / DmPar6和inscuteable(Pins)/Gαi的伴侣。另外,还需要Gβ13F。然而,Gαi的作用以及G蛋白亚基和根尖之间的层次关系还没有很好的定义。在这里,我们描述了Gαi突变体的分离,并表明Gαi和Gβ13F发挥着不同的作用。 Pin定位到皮层需要Gαi,并且Gαi或Pin丢失的影响非常相似,从而支持了Pin /Gαi共同起作用以介导成神经细胞不对称分裂的各个方面的观点。相反,Gβ13F似乎调节了所有根尖组件的不对称定位/稳定性,并且Gβ13F的功能丧失表现出类似于当两个根尖通道均受到损害时所见的表型,表明它在根尖通道的上游起作用。重要的是,我们的研究结果还揭示了根尖复杂功能的一个新方面,即,两个根尖途径多余地抑制了神经母细胞中基底星状微管的形成。

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