Dixit Gauri, Baker Rachael, Sacks Carly M, Torres Matthew P, Dohlman Henrik G
From the Department of Biochemistry and Biophysics.
Department of Biology, and.
J Biol Chem. 2014 May 23;289(21):15052-63. doi: 10.1074/jbc.M114.566117. Epub 2014 Apr 10.
Heterotrimeric G proteins are well known to transmit signals from cell surface receptors to intracellular effector proteins. There is growing appreciation that G proteins are also present at endomembrane compartments, where they can potentially interact with a distinct set of signaling proteins. Here, we examine the cellular trafficking function of the G protein α subunit in yeast, Gpa1. Gpa1 contains a unique 109-amino acid insert within the α-helical domain that undergoes a variety of posttranslational modifications. Among these is monoubiquitination, catalyzed by the NEDD4 family ubiquitin ligase Rsp5. Using a newly optimized method for G protein purification together with biophysical measures of structure and function, we show that the ubiquitination domain does not influence enzyme activity. By screening a panel of 39 gene deletion mutants, each lacking a different ubiquitin binding domain protein, we identify seven that are necessary to deliver Gpa1 to the vacuole compartment including four proteins (Ede1, Bul1, Ddi1, and Rup1) previously not known to be involved in this process. Finally, we show that proper endocytosis of the G protein is needed for sustained cellular morphogenesis and mating in response to pheromone stimulation. We conclude that a cascade of ubiquitin-binding proteins serves to deliver the G protein to its final destination within the cell. In this instance and in contrast to the previously characterized visual system, endocytosis from the plasma membrane is needed for proper signal transduction rather than for signal desensitization.
异源三聚体G蛋白可将信号从细胞表面受体传递至细胞内效应蛋白,这一点广为人知。人们越来越认识到,G蛋白也存在于内膜区室,在那里它们可能与一组独特的信号蛋白相互作用。在此,我们研究了酵母中G蛋白α亚基Gpa1的细胞转运功能。Gpa1在α螺旋结构域内含有一个独特的109个氨基酸的插入序列,该序列会经历多种翻译后修饰。其中包括由NEDD4家族泛素连接酶Rsp5催化的单泛素化。我们使用一种新优化的G蛋白纯化方法以及结构和功能的生物物理测量方法,表明泛素化结构域不影响酶活性。通过筛选一组39个基因缺失突变体,每个突变体都缺少一种不同的泛素结合结构域蛋白,我们鉴定出7种将Gpa1转运至液泡区室所必需的蛋白,其中包括4种此前未知参与此过程的蛋白(Ede1、Bul1、Ddi1和Rup1)。最后,我们表明,G蛋白的正确内吞作用是细胞在信息素刺激下持续进行细胞形态发生和交配所必需的。我们得出结论,一系列泛素结合蛋白可将G蛋白转运至细胞内的最终目的地。在这种情况下,与之前表征的视觉系统不同,质膜的内吞作用对于正确的信号转导是必需的,而不是用于信号脱敏。