Deffieu Maika S, Cesonyte Ieva, Delalande François, Boncompain Gaelle, Dorobantu Cristina, Song Eli, Lucansky Vincent, Hirschler Aurélie, Cianferani Sarah, Perez Franck, Carapito Christine, Gaudin Raphael
Institut de Recherche en Infectiologie de Montpellier (IRIM) CNRS, Univ Montpellier, 34293 Montpellier, France.
INSERM, Univ Strasbourg, 67000 Strasbourg, France.
Sci Adv. 2021 Jan 8;7(2). doi: 10.1126/sciadv.aba7803. Print 2021 Jan.
The biosynthetic secretory pathway is particularly challenging to investigate as it is underrepresented compared to the abundance of the other intracellular trafficking routes. Here, we combined the retention using selective hook (RUSH) to a CRISPR-Cas9 gene editing approach (eRUSH) and identified Rab7-harboring vesicles as an important intermediate compartment of the Golgi-to-plasma membrane transport of neosynthesized transferrin receptor (TfR). These vesicles did not exhibit degradative properties and were not associated to Rab6A-harboring vesicles. Rab7A was transiently associated to neosynthetic TfR-containing post-Golgi vesicles but dissociated before fusion with the plasma membrane. Together, our study reveals a role for Rab7 in the biosynthetic secretory pathway of the TfR, highlighting the diversity of the secretory vesicles' nature.
生物合成分泌途径的研究极具挑战性,因为与其他细胞内运输途径的丰富程度相比,它的代表性不足。在这里,我们将选择性挂钩保留法(RUSH)与CRISPR-Cas9基因编辑方法(eRUSH)相结合,确定携带Rab7的囊泡是新合成的转铁蛋白受体(TfR)从高尔基体到质膜运输的重要中间隔室。这些囊泡不具有降解特性,且与携带Rab6A的囊泡无关。Rab7A与含新合成TfR的高尔基体后囊泡短暂相关,但在与质膜融合前解离。总之,我们的研究揭示了Rab7在TfR生物合成分泌途径中的作用,突出了分泌囊泡性质的多样性。