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PMID: 11713681 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Lrg1p functions as a putative GTPase-activating protein in the Pkc1p-mediated cell integrity pathway in Saccharomyces cerevisiae.

Molecular genetics and genomics : MGG ·Vol. 266 ·No. 3 ·2001-11-00 ·Pages 514-26

Lorberg A, Schmitz HP, Jacoby JJ, Heinisch JJ

Abstract

In Saccharomyces cerevisiae the ROM2 gene encodes a GDP/GTP exchange factor for the small G-protein Rho1p, a known activator of protein kinase C. In a screen designed to isolate suppressors of a rom2 mutant allele, we identified a mutant defective in the gene coding for the putative GTPase-activating protein Lrg1p. This protein was previously suggested to be involved in sporulation and mating. Here we provide evidence for its role in Pkc1p-mediated signal transduction based on the following results. (1) Deletion of LRG1 suppresses the growth phenotypes associated with mutations in SLG1 (which codes for a putative sensor of cell wall damage). (2) Using two-hybrid assays an interaction between the GAP domain of Lrg1p and Rho1p was demonstrated. (3) The lrg1 mutant shows enhanced activity of the Pkc1p pathway. (4) Overexpression of LRG1 leads to a cell lysis defect that can be suppressed by the addition of osmotic stabilizers. Phenotypic comparison of lrg1 mutants with mutants defective in other GTPase-activating proteins (Sac7p, Bem2p, Bag7p) presumed to act on Rho1p revealed that deletion of SAC7, but not BEM2 or BAG7, suppresses the phenotype of rom2 mutants. Pairwise combination of mutations in all these genes showed that the simultaneous deletion of SAC7 and LRG1 is synthetically lethal. We therefore suggest that Lrg1p acts as a negative regulator of the Pkc1p pathway in conjunction with its known homologue Sac7p.

MeSH Terms
Base Sequence Cell Cycle Proteins DNA Transposable Elements DNA-Binding Proteins/metabolism Drosophila Proteins Fungal Proteins/metabolism GTPase-Activating Proteins/metabolism Gene Expression Regulation, Fungal Molecular Sequence Data Mutagenesis Mutation Phenotype Phosphoprotein Phosphatases/metabolism Phosphorylation Plasmids Protein Kinase C Protein Tyrosine Phosphatases Saccharomyces cerevisiae/metabolism Saccharomyces cerevisiae Proteins Two-Hybrid System Techniques
Chemicals
Cell Cycle Proteins DNA Transposable Elements DNA-Binding Proteins Drosophila Proteins Fungal Proteins GTPase-Activating Proteins LRG1 protein, S cerevisiae Saccharomyces cerevisiae Proteins rho GTPase-activating protein Pkc1 protein, Trichoderma reesei Protein Kinase C Phosphoprotein Phosphatases Protein Tyrosine Phosphatases stg protein, Drosophila
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Lorberg A
Institut für Mikrobiologie, Heinrich-Heine-Universität Düsseldorf, Geb. 26.12, 40225 Düsseldorf, Germany.
Schmitz H P
Jacoby J J
Heinisch J J
Article Info
Journal
Molecular genetics and genomics : MGG
Abbr.
Mol Genet Genomics
ISSN
1617-4615
Published
2001-11-00
Pages
514-26
Language
English
Region
Germany
NLM ID
101093320
Subset
IM
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