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Publication : Opposing functions of TFII-I spliced isoforms in growth factor-induced gene expression.

First Author  Hakre S Year  2006
Journal  Mol Cell Volume  24
Issue  2 Pages  301-8
PubMed ID  17052463 Mgi Jnum  J:114436
Mgi Id  MGI:3688993 Doi  10.1016/j.molcel.2006.09.005
Citation  Hakre S, et al. (2006) Opposing functions of TFII-I spliced isoforms in growth factor-induced gene expression. Mol Cell 24(2):301-8
abstractText  Multifunctional transcription factor TFII-I has two spliced isoforms (Delta and beta) in murine fibroblasts. Here we show that these isoforms have distinct subcellular localization and mutually exclusive transcription functions in the context of growth factor signaling. In the absence of signaling, TFII-Ibeta is nuclear and recruited to the c-fos promoter in vivo. But upon growth factor stimulation, the promoter recruitment is abolished and it is exported out of the nucleus. Moreover, isoform-specific silencing of TFII-Ibeta results in transcriptional activation of the c-fos gene. In contrast, TFII-IDelta is largely cytoplasmic in the resting state but translocates to the nucleus upon growth factor signaling, undergoes signal-induced recruitment to the same site on the c-fos promoter, and activates the gene. Importantly, activated TFII-IDelta interacts with Erk1/2 (MAPK) kinase in the cell cytoplasm and imports the Erk1/2 to the nucleus, thereby transducing growth factor signaling. Our results identify a unique growth factor signaling pathway controlled by opposing activities of two TFII-I spliced isoforms.
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