Kosloff Mickey, Elia Natalie, Joel-Almagor Tamar, Timberg Rina, Zars Troy D, Hyde David R, Minke Baruch, Selinger Zvi
Department of Biological Chemistry and the Kühne Minerva Center for Studies of Visual Transduction, Institute of Life Sciences, The Hebrew University, Givat Ram, Jerusalem, 91904, Israel.
EMBO J. 2003 Feb 3;22(3):459-68. doi: 10.1093/emboj/cdg054.
Heterotrimeric G-proteins relay signals between membrane-bound receptors and downstream effectors. Little is known, however, about the regulation of Galpha subunit localization within the natural endogenous environment of a specialized signaling cell. Here we show, using live Drosophila flies, that light causes massive and reversible translocation of the visual Gqalpha to the cytosol, associated with marked architectural changes in the signaling compartment. Molecular genetic dissection together with detailed kinetic analysis enabled us to characterize the translocation cycle and to unravel how signaling molecules that interact with Gqalpha affect these processes. Epistatic analysis showed that Gqalpha is necessary but not sufficient to bring about the morphological changes in the signaling organelle. Furthermore, mutant analysis indicated that Gqbeta is essential for targeting of Gqalpha to the membrane and suggested that Gqbeta is also needed for efficient activation of Gqalpha by rhodopsin. Our results support the 'two-signal model' hypothesis for membrane targeting in a living organism and characterize the regulation of both the activity-dependent Gq localization and the cellular architectural changes in Drosophila photoreceptors.
异源三聚体G蛋白在膜结合受体和下游效应器之间传递信号。然而,关于在专门信号细胞的天然内环境中Gα亚基定位的调控,人们所知甚少。在这里,我们利用活的果蝇表明,光会导致视觉Gqα大量且可逆地转运到细胞质中,这与信号转导区室中显著的结构变化有关。分子遗传学剖析以及详细的动力学分析使我们能够表征转运循环,并揭示与Gqα相互作用的信号分子如何影响这些过程。上位性分析表明,Gqα对于信号转导细胞器的形态变化是必要的,但并不充分。此外,突变分析表明,Gqβ对于将Gqα靶向到膜上至关重要,并表明Gqβ对于视紫红质有效激活Gqα也是必需的。我们的结果支持了活生物体中膜靶向的“双信号模型”假说,并表征了果蝇光感受器中活性依赖性Gq定位和细胞结构变化的调控。