A Protein Domain-Based Interactome Network for C. elegans Early Embryogenesis

Many protein-protein interactions are mediated through independently folding modular domains. Proteome-wide efforts to model protein-protein interaction or “interactome” networks have largely ignored this modular organization of proteins. We developed an experimental strategy to efficiently identify...

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Veröffentlicht in:Cell 2008-08, Vol.134 (3), p.534-545
Hauptverfasser: Boxem, Mike, Maliga, Zoltan, Klitgord, Niels, Li, Na, Lemmens, Irma, Mana, Miyeko, de Lichtervelde, Lorenzo, Mul, Joram D., van de Peut, Diederik, Devos, Maxime, Simonis, Nicolas, Yildirim, Muhammed A., Cokol, Murat, Kao, Huey-Ling, de Smet, Anne-Sophie, Wang, Haidong, Schlaitz, Anne-Lore, Hao, Tong, Milstein, Stuart, Fan, Changyu, Tipsword, Mike, Drew, Kevin, Galli, Matilde, Rhrissorrakrai, Kahn, Drechsel, David, Koller, Daphne, Roth, Frederick P., Iakoucheva, Lilia M., Dunker, A. Keith, Bonneau, Richard, Gunsalus, Kristin C., Hill, David E., Piano, Fabio, Tavernier, Jan, van den Heuvel, Sander, Hyman, Anthony A., Vidal, Marc
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Sprache:eng
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Zusammenfassung:Many protein-protein interactions are mediated through independently folding modular domains. Proteome-wide efforts to model protein-protein interaction or “interactome” networks have largely ignored this modular organization of proteins. We developed an experimental strategy to efficiently identify interaction domains and generated a domain-based interactome network for proteins involved in C. elegans early-embryonic cell divisions. Minimal interacting regions were identified for over 200 proteins, providing important information on their domain organization. Furthermore, our approach increased the sensitivity of the two-hybrid system, resulting in a more complete interactome network. This interactome modeling strategy revealed insights into C. elegans centrosome function and is applicable to other biological processes in this and other organisms.
ISSN:0092-8674
1097-4172
DOI:10.1016/j.cell.2008.07.009