Src activates retrograde membrane traffic through phosphorylation of GBF1

Author:

Chia Joanne1ORCID,Wang Shyi-Chyi12,Wee Sheena1,Gill David James1,Tay Felicia1,Kannan Srinivasaraghavan3,Verma Chandra S345,Gunaratne Jayantha1ORCID,Bard Frederic A1ORCID

Affiliation:

1. Institute of Molecular and Cell Biology

2. Institute of Bioengineering and Bioimaging

3. Bioinformatics Institute

4. Department of Biological Sciences, National University of Singapore

5. School of Biological Sciences, Nanyang Technological University

Abstract

The Src tyrosine kinase controls cancer-critical protein glycosylation through Golgi to ER relocation of GALNTs enzymes. How Src induces this trafficking event is unknown. Golgi to ER transport depends on the GTP exchange factor (GEF) GBF1 and small GTPase Arf1. Here, we show that Src induces the formation of tubular transport carriers containing GALNTs. The kinase phosphorylates GBF1 on 10 tyrosine residues; two of them, Y876 and Y898, are located near the C-terminus of the Sec7 GEF domain. Their phosphorylation promotes GBF1 binding to the GTPase; molecular modeling suggests partial melting of the Sec7 domain and intramolecular rearrangement. GBF1 mutants defective for these rearrangements prevent binding, carrier formation, and GALNTs relocation, while phosphomimetic GBF1 mutants induce tubules. In sum, Src promotes GALNTs relocation by promoting GBF1 binding to Arf1. Based on residue conservation, similar regulation of GEF-Arf complexes by tyrosine phosphorylation could be a conserved and widespread mechanism.

Funder

Astar

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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