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https://doi.org/10.1038/msb.2013.28
Title: | Integrative genomics of gene and metabolic regulation by estrogen receptors α and β, and their coregulators | Authors: | Madak-Erdogan, Z Charn, T.-H Jiang, Y Liu, E.T Katzenellenbogen, J.A Katzenellenbogen, B.S |
Keywords: | estrogen receptor alpha estrogen receptor beta hepatocyte nuclear factor 3alpha mitogen activated protein kinase receptor interacting protein 140 steroid receptor coactivator 3 transcription factor transcription factor GATA 3 transcriptome estrogen receptor alpha estrogen receptor beta NCOA3 protein, human nuclear protein receptor interacting protein 140 signal transducing adaptor protein steroid receptor coactivator 3 transcriptome adipogenesis article binding site cell proliferation chromatin controlled study enzyme activation gene control gene expression genetic association genomics human human cell metabolic regulation priority journal transcription regulation Article gene cluster gene control genetic transcription genomics breast tumor female gene expression regulation genetics metabolism multigene family protein protein interaction signal transduction tumor cell line Adaptor Proteins, Signal Transducing Breast Neoplasms Cell Line, Tumor Cell Proliferation Chromatin Estrogen Receptor alpha Estrogen Receptor beta Female Gene Expression Regulation, Neoplastic Genomics Humans Multigene Family Nuclear Proteins Nuclear Receptor Coactivator 3 Protein Interaction Maps Signal Transduction Transcriptome |
Issue Date: | 2013 | Citation: | Madak-Erdogan, Z, Charn, T.-H, Jiang, Y, Liu, E.T, Katzenellenbogen, J.A, Katzenellenbogen, B.S (2013). Integrative genomics of gene and metabolic regulation by estrogen receptors α and β, and their coregulators. Molecular Systems Biology 9 : 201328. ScholarBank@NUS Repository. https://doi.org/10.1038/msb.2013.28 | Rights: | Attribution 4.0 International | Abstract: | The closely related transcription factors (TFs), estrogen receptors ERα and ERβ, regulate divergent gene expression programs and proliferative outcomes in breast cancer. Utilizing breast cancer cells with ERα, ERβ, or both receptors as a model system to define the basis for differing response specification by related TFs, we show that these TFs and their key coregulators, SRC3 and RIP140, generate overlapping as well as unique chromatin-binding and transcription-regulating modules. Cistrome and transcriptome analyses and the use of clustering algorithms delineated 11 clusters representing different chromatin-bound receptor and coregulator assemblies that could be functionally associated through enrichment analysis with distinct patterns of gene regulation and preferential coregulator usage, RIP140 with ERβ and SRC3 with ERα. The receptors modified each other's transcriptional effect, and ERβ countered the proliferative drive of ERα through several novel mechanisms associated with specific binding-site clusters. Our findings delineate distinct TF-coregulator assemblies that function as control nodes, specifying precise patterns of gene regulation, proliferation, and metabolism, as exemplified by two of the most important nuclear hormone receptors in human breast cancer. © 2013 EMBO and Macmillan Publishers Limited. | Source Title: | Molecular Systems Biology | URI: | https://scholarbank.nus.edu.sg/handle/10635/181834 | ISSN: | 17444292 | DOI: | 10.1038/msb.2013.28 | Rights: | Attribution 4.0 International |
Appears in Collections: | Staff Publications Elements |
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