Ferro Elsi, Tealdi Simone, Margaria Jean Piero, De Santis Maria Chiara, Gozzelino Luca, Cunial Marta, Bena Chiara Enrico, Franco Irene, Hirsch Emilio, Gamba Andrea, Pagnani Andrea, Bosia Carla, Campa Carlo Cosimo
Department of Applied Science and Technology, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Turin, Italy.
Italian Institute for Genomic Medicine, SP142 km 3,95, 10060 Candiolo, Italy.
iScience. 2025 Mar 6;28(4):112170. doi: 10.1016/j.isci.2025.112170. eCollection 2025 Apr 18.
Specificity in membrane trafficking relies on the interaction between Rab small GTPase proteins and their molecular effectors. However, the evidence that different Rab proteins can bind to common effectors challenges this view. Here, we show that molecular competition between distinct Rab GTPases for a shared protein can link diverse membrane trafficking pathways. Theoretical analysis and experimental data support a role for Zfyve26 as a part of a competitive network that modulates changes in Rab5-Rab11 abundance, activation status, and correlation at the surface of single endocytic structures. By leveraging on the Loop index, a novel metric that couples the GTP-bound fraction and the total amount of Rab GTPase, we infer the saturation of Zfyve26 molecules at the endocytic surface from time-lapse imaging data. Our findings establish that transduction in the endocytic system is governed by stoichiometric constraints determining the trade-off between different trafficking pathways at the surface of a membrane-bound organelle.
膜运输的特异性依赖于Rab小GTPase蛋白与其分子效应器之间的相互作用。然而,不同Rab蛋白可结合共同效应器的证据对这一观点提出了挑战。在此,我们表明,不同Rab GTPases对共享蛋白的分子竞争可将多种膜运输途径联系起来。理论分析和实验数据支持Zfyve26作为竞争网络一部分的作用,该网络调节单个内吞结构表面Rab5 - Rab11丰度、激活状态及相关性的变化。通过利用Loop指数(一种结合GTP结合分数和Rab GTPase总量的新指标),我们从延时成像数据推断内吞表面Zfyve26分子的饱和度。我们的研究结果表明,内吞系统中的转导受化学计量学约束支配,这些约束决定了膜结合细胞器表面不同运输途径之间的权衡。