Quirion Laura, Robert Amelie, Boulais Jonathan, Huang Shiying, Bernal Astrain Gabriela, Strakhova Regina, Jo Chang Hwa, Kherdjemil Yacine, Thibault Marie-Pier, Faubert Denis, Kmita Marie, Baskin Jeremy M, Gingras Anne-Claude, Smith Matthew J, Cote Jean-Francois
bioRxiv. 2024 Mar 25:2023.03.01.530598. doi: 10.1101/2023.03.01.530598.
The ADP-ribosylation factors (ARFs) and ARF-like (ARLs) GTPases serve as essential molecular switches governing a wide array of cellular processes. In this study, we utilized proximity-dependent biotin identification (BioID) to comprehensively map the interactome of 28 out of 29 ARF and ARL proteins in two cellular models. Through this approach, we identified ~3000 high-confidence proximal interactors, enabling us to assign subcellular localizations to the family members. Notably, we uncovered previously undefined localizations for ARL4D and ARL10. Clustering analyses further exposed the distinctiveness of the interactors identified with these two GTPases. We also reveal that the expression of the understudied member ARL14 is confined to the stomach and intestines. We identified phospholipase D1 (PLD1) and the ESCPE-1 complex, more precisely SNX1, as proximity interactors. Functional assays demonstrated that ARL14 can activate PLD1 in cellulo and is involved in cargo trafficking via the ESCPE-1 complex. Overall, the BioID data generated in this study provide a valuable resource for dissecting the complexities of ARF and ARL spatial organization and signaling.
ADP核糖基化因子(ARFs)和ARF样(ARLs)GTP酶作为重要的分子开关,调控着广泛的细胞过程。在本研究中,我们利用邻近依赖性生物素识别(BioID)技术,在两种细胞模型中全面绘制了29种ARF和ARL蛋白中28种的相互作用组。通过这种方法,我们鉴定出约3000个高可信度的近端相互作用蛋白,从而能够为该家族成员确定亚细胞定位。值得注意的是,我们发现了ARL4D和ARL10以前未确定的定位。聚类分析进一步揭示了这两种GTP酶所识别的相互作用蛋白的独特性。我们还发现,研究较少的成员ARL14的表达局限于胃和肠道。我们确定磷脂酶D1(PLD1)和ESCPE-1复合物,更确切地说是SNX1,为近端相互作用蛋白。功能分析表明,ARL14在细胞内可激活PLD1,并通过ESCPE-1复合物参与货物运输。总的来说,本研究中生成的BioID数据为剖析ARF和ARL空间组织及信号传导的复杂性提供了宝贵资源。