YLR157C-B Physical and Genetic Interactions Help

This page lists genes/proteins that interact with YLR157C-B. See help for information about interaction data.

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Interactions for YLR157C-B (7)
Feature Gene Description Experiment Type Type Action Source Annotation Type Modification Phenotype Note Reference
YGR252W GCN5 Acetyltransferase, modifies N-terminal lysines on histones H2B and H3 Affinity Capture-MS physical interactions Bait BioGRID high-throughput prey identified by MudPIT Lee KK, et al. (2011) Combinatorial depletion analysis to assemble the network architecture of the SAGA and ADA chromatin remodeling complexes. Mol Syst Biol 7():503
YCL010C SGF29 Component of the HAT/Core module of the SAGA, SLIK, and ADA complexes Affinity Capture-MS physical interactions Bait BioGRID high-throughput prey identified by MudPIT Lee KK, et al. (2011) Combinatorial depletion analysis to assemble the network architecture of the SAGA and ADA chromatin remodeling complexes. Mol Syst Biol 7():503
YGL066W SGF73 SAGA complex subunit Affinity Capture-MS physical interactions Bait BioGRID high-throughput prey identified by MudPIT Lee KK, et al. (2011) Combinatorial depletion analysis to assemble the network architecture of the SAGA and ADA chromatin remodeling complexes. Mol Syst Biol 7():503
YBR081C SPT7 Subunit of the SAGA transcriptional regulatory complex Affinity Capture-MS physical interactions Bait BioGRID high-throughput prey identified by MudPIT Lee KK, et al. (2011) Combinatorial depletion analysis to assemble the network architecture of the SAGA and ADA chromatin remodeling complexes. Mol Syst Biol 7():503
YMR236W TAF9 Subunit (17 kDa) of TFIID and SAGA complexes Affinity Capture-MS physical interactions Bait BioGRID high-throughput prey identified by MudPIT Lee KK, et al. (2011) Combinatorial depletion analysis to assemble the network architecture of the SAGA and ADA chromatin remodeling complexes. Mol Syst Biol 7():503
YLL039C UBI4 Ubiquitin Affinity Capture-MS physical interactions Bait BioGRID high-throughput Candidate ubiquitin substrates were identified using ubiquitin remnant immunoaffinity profiling Starita LM, et al. (2012) Sites of ubiquitin attachment in Saccharomyces cerevisiae. Proteomics 12(2):236-40
YLL039C UBI4 Ubiquitin Affinity Capture-MS physical interactions Bait BioGRID high-throughput Ziv I, et al. (2011) A perturbed ubiquitin landscape distinguishes between ubiquitin in trafficking and in proteolysis. Mol Cell Proteomics 10(5):M111.009753