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Palabras contadas: e1a: 3, protein: 1717
Dennler, S. - Pendaries, V. - Tacheau, C. - Costas, M.A. - Mauviel, A. - Verrecchia, F.
Oncogene 2005;24(11):1936-1945
2005

Descripción: The three related 160-kDa proteins, SRC-1, TIF-2 and RAC-3, were initially identified as factors interacting with nuclear receptors. They have also been reported to potentiate the activity of other transcription factors such as AP-1 or NF-κB. The aim of this work was to identify whether SRC-1 interferes with the TGF-β/Smad signaling pathway, and if so, to identify its underlying mechanisms of action. Using transient cell transfection experiments performed in human dermal fibroblasts with the Smad3/4-specific (SBE) 4-lux reporter construct, as well as the human PAI-1 promoter, we determined that SRC-1 enhances TGF-β-induced, Smad-mediated, transcription. Likewise, SRC-1 overexpression potentiated TGF-β-induced upregulation of PAI-1 steady-state mRNA levels. Using a mammalian two-hybrid system, we demonstrated that SRC-1 interacts with the transcriptional co-activators p300/CBP, but not with Smad3. Overexpression of the adenovirus E1A oncoprotein, an inhibitor of CBP/p300 activity, prevented the enhancing effect of SRC-1 on Smad3/4-mediated transcription, indicating that p300/CBP may be required for SRC-1 effect. Such hypothesis was validated, as expression of a mutant form of SRC-1 lacking the CBP/p300-binding site failed to upregulate Smad3/4-dependent transcription, while full-length SRC-1 potentiated p300-Smad3 interactions. These results identify SRC-1 as a novel Smad3/4 transcriptional partner, facilitating the functional link between Smad3 and p300/CBP. © 2005 Nature Publishing Group All rights reserved.
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Tipo de documento: info:ar-repo/semantics/artículo

De La Mata, M. - Alonso, C.R. - Kadener, S. - Fededa, J.P. - Blaustein, M. - Pelisch, F. - Cramer, P. - Bentley, D. - Kornblihtt, A.R.
Mol. Cell 2003;12(2):525-532
2003

Descripción: Changes in promoter structure and occupation have been shown to modify the splicing pattern of several genes, evidencing a coupling between transcription and alternative splicing. It has been proposed that the promoter effect involves modulation of RNA pol II elongation rates. The C4 point mutation of the Drosophila pol II largest subunit confers on the enzyme a lower elongation rate. Here we show that expression of a human equivalent to Drosophila's C4 pol II in human cultured cells affects alternative splicing of the fibronectin EDI exon and adenovirus E1a pre-mRNA. Most importantly, resplicing of the Hox gene Ultrabithorax is stimulated in Drosophila embryos mutant for C4, which demonstrates the transcriptional control of alternative splicing on an endogenous gene. These results provide a direct proof for the elongation control of alternative splicing in vivo.
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Tipo de documento: info:ar-repo/semantics/artículo