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PMID: 16855397 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Phenotypic activation to discover biological pathways and kinase substrates.

Cell cycle (Georgetown, Tex.) ·Vol. 5 ·No. 13 ·2006-07-00 ·Pages 1397-402

Sopko R, Papp B, Oliver SG, Andrews BJ

Abstract

Observing the effects of gene perturbation on cells or organisms has long been a standard strategy in biological research. We developed a genome-wide gene overexpression library as a new tool for large-scale functional analysis in budding yeast. Previous large-scale genetic studies have focused on applications of the deletion mutant collection, which has arguably revolutionized the functional characterization of yeast genes. While extremely powerful, deletion mutant experiments are generally limited to the characterization of loss-of-function phenotypes. We have explored the potential for using the Synthetic Genetic Array (SGA) method, a platform for high-throughput genetic analysis, with a genome-wide "overexpression array", in which each strain on the array overexpresses a unique yeast gene. The overexpression array enables gain-of-function phenotypes to be examined on a large scale, providing a unique insight into gene function and a novel source of reagents for the global mapping of genetic networks and functional relationships amongst genes and pathways. Understanding the molecular bases of overexpression phenotypes should also shed new light on the nature of genetic dominance.

MeSH Terms
Animals Gene Expression Regulation Genes, Lethal/genetics Humans Mutation/genetics Phenotype Phosphotransferases/genetics,metabolism Substrate Specificity
Chemicals
Phosphotransferases
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Sopko Richelle
Terrence Donnelly Centre for Cellular and Biomolecular Research, Banting & Best Department of Medical Research, Department of Molecular & Medical Genetics, University of Toronto, Toronto, Ontario, Canada.
Papp Balázs
Oliver Stephen G
Andrews Brenda J
Article Info
Journal
Cell cycle (Georgetown, Tex.)
Abbr.
Cell Cycle
ISSN
1551-4005
Published
2006-07-00
Epub
2006-00-01
Pages
1397-402
Language
English
Region
United States
NLM ID
101137841
Subset
IM
Grants
Biotechnology and Biological Sciences Research Council · E19354 · United Kingdom
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