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Multiple and Stepwise Interactions Between Coatomer and ADP-Ribosylation Factor-1 (Arf1)-GTP

机译:Coatomer与ADP-核糖基化因子-1(Arf1)-GTP之间的多重逐步相互作用

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The small GTPase ADP-ribosylation factor-1 (Arf1) plays a key role in the formation of coat protein I (COP I (-coated vesicles. Upon recruitment to the donor Golgi membrane by interaction with dimeric p24 proteins, Arf1's GDP is exchanged for GTP. Arf1-GTP then dissociates from p24, and together with other Golgi membrane proteins, it recruits coatomer, the heptameric coat protein complex of COP I vesicles, from the cytosol. In this process, Arf1 was shown to specifically interact with the coatomer β and γ-COP subunits through its switch I region, and with ε-COP. Here, we mapped the interaction of the Arf1-GTP switch I region to the trunk domains of β and γ-COP. Site-directed photolabeling at position 167 in the C-terminal helix of Arf1 revealed a novel interaction with coatomer via a putative longin domain of δ-COP. Thus, coatomer is linked to the Golgi through multiple interfaces with membrane-bound Arf1-GTP. These interactions are located within the core, adaptor-like domain of coatomer, indicating an organizational similarity between the COP I coat and clathrin adaptor complexes.
机译:小GTPase ADP-核糖基化因子1(Arf1)在外壳蛋白I(COP I(包被的囊泡)的形成中起关键作用。在通过与二聚体p24蛋白相互作用而募集到供体高尔基体膜上时,Arf1的GDP被交换为然后,Arf1-GTP从p24上解离,并与其他高尔基体膜蛋白一起从细胞质中募集被膜COP1囊泡的七聚体外壳蛋白复合物,这一过程表明Arf1与被膜β特异性相互作用。和γ-COP亚基通过其开关I区域,并与ε-COP。在这里,我们将Arf1-GTP开关I区域的相互作用映射到β和γ-COP的主干结构域。 Arf1的C末端螺旋结构揭示了通过δ-COP的假定的Longin结构域与涂料聚合物发生新的相互作用,因此,涂料聚合物通过与膜结合的Arf1-GTP的多个界面与高尔基体相连,这些相互作用位于核内,大衣的类似适配器的结构域mer,表明COP I外套和网格蛋白衔接子复合物之间的组织相似性。

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