Two Human ARFGAPs Associated with COP‐I‐Coated Vesicles
Open Access
- 27 July 2007
- Vol. 8 (11) , 1644-1655
- https://doi.org/10.1111/j.1600-0854.2007.00631.x
Abstract
ADP‐ribosylation factors (ARFs) are critical regulators of vesicular trafficking pathways and act at multiple intracellular sites. ADP‐ribosylation factor‐GTPase‐activating proteins (ARFGAPs) are proposed to contribute to site‐specific regulation. In yeast, two distinct proteins, Glo3p and Gcs1p, together provide overlapping, essential ARFGAP function required for coat protein (COP)‐I‐dependent trafficking. In mammalian cells, only the Gcs1p orthologue, named ARFGAP1, has been characterized in detail. However, Glo3p is known to make the stronger contribution to COP I traffic in yeast. Here, based on a conserved signature motif close to the carboxy terminus, we identify ARFGAP2 and ARFGAP3 as the human orthologues of yeast Glo3p. By immunofluorescence (IF), ARFGAP2 and ARFGAP3 are closely colocalized with coatomer subunits in NRK cells in the Golgi complex and peripheral punctate structures. In contrast to ARFGAP1, both ARFGAP2 and ARFGAP3 are associated with COP‐I‐coated vesicles generated from Golgi membranes in the presence of GTP‐γ‐S in vitro. ARFGAP2 lacking its zinc finger domain directly binds to coatomer. Expression of this truncated mutant (ΔN‐ARFGAP2) inhibits COP‐I‐dependent Golgi‐to‐endoplasmic reticulum transport of cholera toxin (CTX‐K63) in vivo. Silencing of ARFGAP1 or a combination of ARFGAP2 and ARFGAP3 in HeLa cells does not decrease cell viability. However, silencing all three ARFGAPs causes cell death. Our data provide strong evidence that ARFGAP2 and ARFGAP3 function in COP I traffic.Keywords
This publication has 38 references indexed in Scilit:
- The Arf GAPs AGAP1 and AGAP2 distinguish between the adaptor protein complexes AP-1 and AP-3Journal of Cell Science, 2005
- The ArfGAP Glo3 Is Required for the Generation of COPI VesiclesMolecular Biology of the Cell, 2004
- Coat proteins: shaping membrane transportNature Reviews Molecular Cell Biology, 2003
- ER-to-Golgi transport: COP I and COP II function (Review)Molecular Membrane Biology, 2003
- The Gcs1 and Age2 ArfGAP proteins provide overlapping essential function for transport from the yeast trans-Golgi networkThe Journal of cell biology, 2001
- Sorting of Golgi resident proteins into different subpopulations of COPI vesiclesThe Journal of cell biology, 2001
- The ADP-ribosylation factor GTPase-activating protein GIo3p is involved in ER retrievalEuropean Journal of Cell Biology, 1999
- Protein Sorting by Transport VesiclesScience, 1996
- Coatomer is essential for retrieval of dilysine-tagged proteins to the endoplasmic reticulumPublished by Elsevier ,1994
- A coat subunit of Golgi-derived non-clathrin-coated vesicles with homology to the clathrin-coated vesicle coat protein β-adaptinNature, 1991