Literature DB >> 11592960

Regulation of GTP hydrolysis on ADP-ribosylation factor-1 at the Golgi membrane.

E Szafer1, M Rotman, D Cassel.   

Abstract

The interaction of the coatomer coat complex with the Golgi membrane is initiated by the active, GTP-bound state of the small GTPase ADP-ribosylation factor 1 (ARF1), whereas GTP hydrolysis triggers coatomer dissociation. The hydrolysis of GTP on ARF1 depends on the action of members of a family of ARF1-directed GTPase-activating proteins (GAPs). Previous studies in well defined systems indicated that the activity of a mammalian Golgi membrane-localized ARF GAP (GAP1) might be subjected to regulation by membrane lipids as well as by the coatomer complex. Coatomer was found to strongly stimulate GAP-dependent GTP hydrolysis on a membrane-independent mutant of ARF1, whereas we reported that GTP hydrolysis on wild type, myristoylated ARF1 loaded with GTP in the presence of phospholipid vesicles was coatomer-independent. To investigate the regulation of ARF1 GAPs under more physiological conditions, we studied GTP hydrolysis on Golgi membrane-associated ARF1. The activities at the Golgi of recombinant GAP1 as well as coatomer-depleted fractions from rat brain cytosol resembled those observed in the presence of liposomes; however, unlike in liposomes, GAP activities on Golgi membranes were approximately doubled upon addition of coatomer. By contrast, endogenous GAP activity in Golgi membrane preparations was unaffected by coatomer. Cytosolic GAP activity was partially reduced following immunodepletion of GAP1, indicating that GAP1 plays a significant although not exclusive role in the regulation of GTP hydrolysis at the Golgi. Unlike the activities of the mammalian proteins, the Saccharomyces cerevisiae Glo3 ARF GAP displayed activity at the Golgi that was highly dependent on coatomer. We conclude that ARF GAPs in themselves can efficiently stimulate GTP hydrolysis on ARF1 at the Golgi, and that coatomer may play an auxiliary role in this reaction, which would lead to an increased cycling rate of ARF1 in COPI-coated regions of the Golgi membrane.

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Year:  2001        PMID: 11592960     DOI: 10.1074/jbc.M106000200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  21 in total

Review 1.  COPI-mediated transport.

Authors:  J Béthune; F Wieland; J Moelleken
Journal:  J Membr Biol       Date:  2006-10-14       Impact factor: 1.843

2.  Oligomerization and dissociation of AP-1 adaptors are regulated by cargo signals and by ArfGAP1-induced GTP hydrolysis.

Authors:  Daniel M Meyer; Pascal Crottet; Bohumil Maco; Elena Degtyar; Dan Cassel; Martin Spiess
Journal:  Mol Biol Cell       Date:  2005-08-10       Impact factor: 4.138

3.  Three homologous ArfGAPs participate in coat protein I-mediated transport.

Authors:  Akina Saitoh; Hye-Won Shin; Akane Yamada; Satoshi Waguri; Kazuhisa Nakayama
Journal:  J Biol Chem       Date:  2009-03-19       Impact factor: 5.157

4.  ArfGAP1 generates an Arf1 gradient on continuous lipid membranes displaying flat and curved regions.

Authors:  Ernesto Ambroggio; Benoît Sorre; Patricia Bassereau; Bruno Goud; Jean-Baptiste Manneville; Bruno Antonny
Journal:  EMBO J       Date:  2009-11-19       Impact factor: 11.598

Review 5.  COPI budding within the Golgi stack.

Authors:  Vincent Popoff; Frank Adolf; Britta Brügger; Felix Wieland
Journal:  Cold Spring Harb Perspect Biol       Date:  2011-11-01       Impact factor: 10.005

6.  9Å structure of the COPI coat reveals that the Arf1 GTPase occupies two contrasting molecular environments.

Authors:  Svetlana O Dodonova; Patrick Aderhold; Juergen Kopp; Iva Ganeva; Simone Röhling; Wim J H Hagen; Irmgard Sinning; Felix Wieland; John A G Briggs
Journal:  Elife       Date:  2017-06-16       Impact factor: 8.140

7.  Exo1: a new chemical inhibitor of the exocytic pathway.

Authors:  Yan Feng; Sidney Yu; Troy K R Lasell; Ashutosh P Jadhav; Eric Macia; Pierre Chardin; Paul Melancon; Michael Roth; Timothy Mitchison; Tomas Kirchhausen
Journal:  Proc Natl Acad Sci U S A       Date:  2003-05-08       Impact factor: 11.205

8.  Membrane recruitment of the cargo-selective retromer subcomplex is catalysed by the small GTPase Rab7 and inhibited by the Rab-GAP TBC1D5.

Authors:  Matthew N J Seaman; Michael E Harbour; Daniel Tattersall; Eliot Read; Nicholas Bright
Journal:  J Cell Sci       Date:  2009-06-16       Impact factor: 5.285

9.  Discrete determinants in ArfGAP2/3 conferring Golgi localization and regulation by the COPI coat.

Authors:  Lena Kliouchnikov; Joëlle Bigay; Bruno Mesmin; Anna Parnis; Moran Rawet; Noga Goldfeder; Bruno Antonny; Dan Cassel
Journal:  Mol Biol Cell       Date:  2008-12-24       Impact factor: 4.138

10.  Live-cell imaging in Caenorhabditis elegans reveals the distinct roles of dynamin self-assembly and guanosine triphosphate hydrolysis in the removal of apoptotic cells.

Authors:  Bin He; Xiaomeng Yu; Moran Margolis; Xianghua Liu; Xiaohong Leng; Yael Etzion; Fei Zheng; Nan Lu; Florante A Quiocho; Dganit Danino; Zheng Zhou
Journal:  Mol Biol Cell       Date:  2009-12-16       Impact factor: 4.138

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