Proteomics

Dataset Information

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Development of the eRush system revealed a role for Rab7 in the neosynthetic secretory pathway


ABSTRACT: Our study proposes the eRush as a powerful tool to further study the secretory pathway and sheds light on Rab7 for its involvement in the neosynthetic transport of the TfR.

INSTRUMENT(S):

ORGANISM(S): Homo Sapiens (human) Bos Taurus (bovine)

TISSUE(S): Permanent Cell Line Cell, Cell Culture

DISEASE(S): Breast Cancer

SUBMITTER: Francois Delalande  

LAB HEAD: Sarah CIANFERANI

PROVIDER: PXD010576 | Pride | 2021-02-03

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
OxidationMSites.txt Txt
QE18593FD.raw Raw
QE18597FD.raw Raw
QE18599FD.raw Raw
QE18601FD.raw Raw
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Publications

Rab7-harboring vesicles are carriers of the transferrin receptor through the biosynthetic secretory pathway.

Deffieu Maika S MS   Cesonyte Ieva I   Delalande François F   Boncompain Gaelle G   Dorobantu Cristina C   Song Eli E   Lucansky Vincent V   Hirschler Aurélie A   Cianferani Sarah S   Perez Franck F   Carapito Christine C   Gaudin Raphael R  

Science advances 20210108 2


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 prope  ...[more]

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