*** TEST ***
Helmholtz Gemeinschaft

Search
Browse
Statistics
Feeds

Development and application of a DNA microarray-based yeast two-hybrid system

[thumbnail of 12752oa.pdf] PDF - Requires a PDF viewer such as GSview, Xpdf or Adobe Acrobat Reader
9MB

Item Type:Article
Title:Development and application of a DNA microarray-based yeast two-hybrid system
Creators Name:Suter, B., Fontaine, J.F., Yildirimman, R., Raskó, T., Schaefer, M.H., Rasche, A., Porras, P., Vázquez-Álvarez, B.M., Russ, J., Rau, K., Foulle, R., Zenkner, M., Saar, K., Herwig, R., Andrade-Navarro, M.A. and Wanker, E.E.
Abstract:The yeast two-hybrid (Y2H) system is the most widely applied methodology for systematic protein-protein interaction (PPI) screening and the generation of comprehensive interaction networks. We developed a novel Y2H interaction screening procedure using DNA microarrays for high-throughput quantitative PPI detection. Applying a global pooling and selection scheme to a large collection of human open reading frames, proof-of-principle Y2H interaction screens were performed for the human neurodegenerative disease proteins huntingtin and ataxin-1. Using systematic controls for unspecific Y2H results and quantitative benchmarking, we identified and scored a large number of known and novel partner proteins for both huntingtin and ataxin-1. Moreover, we show that this parallelized screening procedure and the global inspection of Y2H interaction data are uniquely suited to define specific PPI patterns and their alteration by disease-causing mutations in huntingtin and ataxin-1. This approach takes advantage of the specificity and flexibility of DNA microarrays and of the existence of solid-related statistical methods for the analysis of DNA microarray data, and allows a quantitative approach toward interaction screens in human and in model organisms.
Keywords:Mutation, Nerve Tissue Proteins, Nuclear Proteins, Oligonucleotide Array Sequence Analysis, Open Reading Frames, Protein Interaction Maps, Two-Hybrid System Techniques, Yeasts
Source:Nucleic Acids Research
ISSN:0305-1048
Publisher:Oxford University Press
Volume:41
Number:3
Page Range:1496-507
Date:1 February 2013
Official Publication:https://doi.org/10.1093/nar/gks1329
PubMed:View item in PubMed

Repository Staff Only: item control page

Downloads

Downloads per month over past year

Open Access
MDC Library