Yanguas Francisco, Progida Cinzia
Department of Biosciences, University of Oslo, Oslo, Norway.
Front Cell Dev Biol. 2025 May 30;13:1588308. doi: 10.3389/fcell.2025.1588308. eCollection 2025.
Rab5 is a key regulator of early endosomal traffic and fusion. It shares its localization and guanine nucleotide exchange factor Rabex-5 with the less characterized member of the Rab5 subfamily Rab21. Here, we found that, similarly to Rab5, Rab21 also interacts with the tethering protein EEA1. Overexpression of Rab21 rescues the defects in EEA1 localization and endosomal size caused by the depletion of PI3P or the inhibition of Rab5 function, both needed for the recruitment of EEA1 to early endosomes. Interestingly, modulation of the binding properties of Rab5 or Rab21 dominant negative mutant with Rabex-5 support a model in which Rab5 and Rab21 compete for the activation by Rabex-5 and suggest that Rab21 might have higher affinity for this GEF than Rab5 . Altogether, our results reveal that Rab21 regulates early endosomal size by recruiting EEA1 to the endosomes via a pathway parallel to Rab5 and highlight Rabex-5's critical role in Rab21 and Rab5 cross-regulation.
Rab5是早期内体运输和融合的关键调节因子。它与Rab5亚家族中特征较少的成员Rab21共享其定位和鸟嘌呤核苷酸交换因子Rabex-5。在这里,我们发现,与Rab5类似,Rab21也与拴系蛋白EEA1相互作用。Rab21的过表达挽救了因PI3P耗竭或Rab5功能抑制导致的EEA1定位缺陷和内体大小异常,而这两者都是EEA1募集到早期内体所必需的。有趣的是,Rab5或Rab21显性负性突变体与Rabex-5结合特性的调节支持了一种模型,即Rab5和Rab21竞争由Rabex-5激活,并表明Rab21对这种鸟嘌呤核苷酸交换因子的亲和力可能高于Rab5。总之,我们的结果表明,Rab21通过一条与Rab5平行的途径将EEA1募集到内体来调节早期内体大小,并突出了Rabex-5在Rab21和Rab5交叉调节中的关键作用。