Identification of a Family of cAMP Response Element-Binding Protein Coactivators by Genome-Scale Functional Analysis in Mammalian Cells

This report describes an unbiased method for systematically determining gene function in mammalian cells. A total of 20,704 predicted human full-length cDNAs were tested for induction of the IL-8 promoter. A number of genes, including those for cytokines, receptors, adapters, kinases, and transcript...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2003-10, Vol.100 (21), p.12147-12152
Hauptverfasser: Iourgenko, Vadim, Zhang, Wenjun, Mickanin, Craig, Daly, Ira, Jiang, Can, Hexham, Jonathan M., Orth, Anthony P., Miraglia, Loren, Meltzer, Jodi, Garza, Dan, Chirn, Gung-Wei, McWhinnie, Elizabeth, Cohen, Dalia, Skelton, Joanne, Terry, Robert, Yu, Yang, Bodian, Dale, Buxton, Frank P., Zhu, Jian, Song, Chuanzheng, Labow, Mark A.
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Sprache:eng
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Zusammenfassung:This report describes an unbiased method for systematically determining gene function in mammalian cells. A total of 20,704 predicted human full-length cDNAs were tested for induction of the IL-8 promoter. A number of genes, including those for cytokines, receptors, adapters, kinases, and transcription factors, were identified that induced the IL-8 promoter through known regulatory sites. Proteins that acted through a cooperative interaction between an AP-1 and an unrecognized cAMP response element (CRE)-like site were also identified. A protein, termed transducer of regulated cAMP response element-binding protein (CREB) (TORC1), was identified that activated expression through the variant CRE and consensus CRE sites. TORC1 potently induced known CREB1 target genes, bound CREB1, and activated expression through a potent transcription activation domain. A functional Drosophila TORC gene was also identified. Thus, TORCs represent a family of highly conserved CREB coactivators that may control the potency and specificity of CRE-mediated responses.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.1932773100