New Regulators of Wnt/β-Catenin Signaling Revealed by Integrative Molecular Screening

Michael B. Major(Howard Hughes Medical Institute), Brian S. Roberts(Rosetta Stone (United States)), Jason D. Berndt(Howard Hughes Medical Institute), Shane Marine(Merck & Co., Inc., Rahway, NJ, USA (United States)), Jamie N. Anastas(Howard Hughes Medical Institute), Namjin Chung(Merck & Co., Inc., Rahway, NJ, USA (United States)), Marc Ferrer(Merck & Co., Inc., Rahway, NJ, USA (United States)), Xianhua Yi(University of Washington), Cristi L. Stoick-Cooper(Howard Hughes Medical Institute), Priska D. von Haller(University of Washington), Lorna Kategaya(Howard Hughes Medical Institute), Andy J. Chien(Howard Hughes Medical Institute), Stéphane Angers(University of Toronto), Michael J. MacCoss(University of Washington), Michele A. Cleary(Rosetta Stone (United States)), William T. Arthur(Rosetta Stone (United States)), Randall T. Moon(Howard Hughes Medical Institute)
Science Signaling
November 11, 2008
Cited by 157

Abstract

The identification and characterization of previously unidentified signal transduction molecules has expanded our understanding of biological systems and facilitated the development of mechanism-based therapeutics. We present a highly validated small interfering RNA (siRNA) screen that functionally annotates the human genome for modulation of the Wnt/beta-catenin signal transduction pathway. Merging these functional data with an extensive Wnt/beta-catenin protein interaction network produces an integrated physical and functional map of the pathway. The power of this approach is illustrated by the positioning of siRNA screen hits into discrete physical complexes of proteins. Similarly, this approach allows one to filter discoveries made through protein-protein interaction screens for functional contribution to the phenotype of interest. Using this methodology, we characterized AGGF1 as a nuclear chromatin-associated protein that participates in beta-catenin-mediated transcription in human colon cancer cells.


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