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PMID: 16950926 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

RacG regulates morphology, phagocytosis, and chemotaxis.

Eukaryotic cell ·Vol. 5 ·No. 10 ·2006-10-00 ·Pages 1648-63

Somesh BP, Vlahou G, Iijima M, Insall RH, Devreotes P, Rivero F

Abstract

RacG is an unusual member of the complex family of Rho GTPases in Dictyostelium. We have generated a knockout (KO) strain, as well as strains that overexpress wild-type (WT), constitutively active (V12), or dominant negative (N17) RacG. The protein is targeted to the plasma membrane, apparently in a nucleotide-dependent manner, and induces the formation of abundant actin-driven filopods. RacG is enriched at the rim of the progressing phagocytic cup, and overexpression of RacG-WT or RacG-V12 induced an increased rate of particle uptake. The positive effect of RacG on phagocytosis was abolished in the presence of 50 microM LY294002, a phosphoinositide 3-kinase inhibitor, indicating that generation of phosphatidylinositol 3,4,5-trisphosphate is required for activation of RacG. RacG-KO cells showed a moderate chemotaxis defect that was stronger in the RacG-V12 and RacG-N17 mutants, in part because of interference with signaling through Rac1. The in vivo effects of RacG-V12 could not be reproduced by a mutant lacking the Rho insert region, indicating that this region is essential for interaction with downstream components. Processes like growth, pinocytosis, exocytosis, cytokinesis, and development were unaffected in Rac-KO cells and in the overexpressor mutants. In a cell-free system, RacG induced actin polymerization upon GTPgammaS stimulation, and this response could be blocked by an Arp3 antibody. While the mild phenotype of RacG-KO cells indicates some overlap with one or more Dictyostelium Rho GTPases, like Rac1 and RacB, the significant changes found in overexpressors show that RacG plays important roles. We hypothesize that RacG interacts with a subset of effectors, in particular those concerned with shape, motility, and phagocytosis.

MeSH Terms
Actins/metabolism Amino Acids/chemistry Animals Cell Aggregation/drug effects Cell Survival/drug effects Chemotaxis/drug effects,physiology Chromones/pharmacology Cyclic AMP/metabolism Dictyostelium/cytology,drug effects Exocytosis/drug effects Gene Expression Morpholines/pharmacology Mutation/genetics Phagocytosis/drug effects,physiology Phosphoinositide-3 Kinase Inhibitors Protein Transport/drug effects Pseudopodia/drug effects,metabolism Recombinant Fusion Proteins/metabolism Yeasts/cytology rho GTP-Binding Proteins/metabolism
Chemicals
Actins Amino Acids Chromones Morpholines Phosphoinositide-3 Kinase Inhibitors Recombinant Fusion Proteins 2-(4-morpholinyl)-8-phenyl-4H-1-benzopyran-4-one Cyclic AMP rho GTP-Binding Proteins
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Somesh Baggavalli P
Center for Biochemistry, Medical Faculty, University of Cologne, Joseph-Stelzmann-Strasse 52, D-50931 Cologne, Germany.
Vlahou Georgia
Iijima Miho
Insall Robert H
Devreotes Peter
Rivero Francisco
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Article Info
Journal
Eukaryotic cell
Abbr.
Eukaryot Cell
ISSN
1535-9778
Published
2006-10-00
Epub
2006-00-01
Pages
1648-63
Language
English
Region
United States
NLM ID
101130731
PMCID
PMC1595345
Subset
IM
Grants
NIGMS NIH HHS · R01 GM028007 · United States
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