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Genome Biology|December 7, 2006
How complete are current yeast and human protein-interaction networks?G Traver Hart, Arun K Ramani, Edward M MarcotteMolecular Systems Biology|April 17, 2008
A map of human protein interactions derived from co-expression of human mRNAs and their orthologsArun K Ramani, Zhihua Li, G Traver Hart, et al.Journal of Molecular Biology|March 5, 2003
Exploiting the co-evolution of interacting proteins to discover interaction specificityArun K Ramani, Edward M MarcotteMethods in Molecular Biology (Clifton, N.J.)|November 25, 2010
High-throughput immunofluorescence microscopy using yeast spheroplast cell-based microarraysWei Niu, G Traver Hart, Edward M MarcotteGenome Biology|May 17, 2005
Consolidating the set of known human protein-protein interactions in preparation for large-scale mapping of the human interactomeArun K Ramani, Razvan C Bunescu, Raymond J Mooney, et al.Current Opinion in Structural Biology|June 15, 2004
Protein interaction networks from yeast to humanPeer Bork, Lars J Jensen, Christian von Mering, et al.Artificial Intelligence in Medicine|April 7, 2005
Comparative experiments on learning information extractors for proteins and their interactionsRazvan Bunescu, Ruifang Ge, Rohit J Kate, et al.Genome Biology|March 2, 2006
Systematic profiling of cellular phenotypes with spotted cell microarrays reveals mating-pheromone response genesRammohan Narayanaswamy, Wei Niu, Alexander D Scouras, et al.Journal of Proteome Research|December 5, 2008
Systematic definition of protein constituents along the major polarization axis reveals an adaptive reuse of the polarization machinery in pheromone-treated budding yeastRammohan Narayanaswamy, Emily K Moradi, Wei Niu, et al.BMC Bioinformatics|July 4, 2007
A high-accuracy consensus map of yeast protein complexes reveals modular nature of gene essentialityG Traver Hart, Insuk Lee, Edward R MarcottePageof 27