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A novel link between the proteasome pathway and the signal transduction pathway of the Bone Morphogenetic Proteins (BMPs)

BACKGROUND: The intracellular signaling events of the Bone Morphogenetic Proteins (BMPs) involve the R-Smad family members Smad1, Smad5, Smad8 and the Co-Smad, Smad4. Smads are currently considered to be DNA-binding transcriptional modulators and shown to recruit the master transcriptional co-activa...

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Autores principales: Lin, Yin, Martin, Jennifer, Gruendler, Cornelia, Farley, Jennifer, Meng, Xianwang, Li, Bi-Yu, Lechleider, Robert, Huff, Carla, Kim, Richard H, Grasser, William, Paralkar, Vishwas, Wang, Tongwen
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2002
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC117437/
https://www.ncbi.nlm.nih.gov/pubmed/12097147
http://dx.doi.org/10.1186/1471-2121-3-15
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author Lin, Yin
Martin, Jennifer
Gruendler, Cornelia
Farley, Jennifer
Meng, Xianwang
Li, Bi-Yu
Lechleider, Robert
Huff, Carla
Kim, Richard H
Grasser, William
Paralkar, Vishwas
Wang, Tongwen
author_facet Lin, Yin
Martin, Jennifer
Gruendler, Cornelia
Farley, Jennifer
Meng, Xianwang
Li, Bi-Yu
Lechleider, Robert
Huff, Carla
Kim, Richard H
Grasser, William
Paralkar, Vishwas
Wang, Tongwen
author_sort Lin, Yin
collection PubMed
description BACKGROUND: The intracellular signaling events of the Bone Morphogenetic Proteins (BMPs) involve the R-Smad family members Smad1, Smad5, Smad8 and the Co-Smad, Smad4. Smads are currently considered to be DNA-binding transcriptional modulators and shown to recruit the master transcriptional co-activator CBP/p300 for transcriptional activation. SNIP1 is a recently discovered novel repressor of CBP/p300. Currently, the detailed molecular mechanisms that allow R-Smads and Co-Smad to co-operatively modulate transcription events are not fully understood. RESULTS: Here we report a novel physical and functional link between Smad1 and the 26S proteasome that contributes to Smad1- and Smad4-mediated transcriptional regulation. Smad1 forms a complex with a proteasome β subunit HsN3 and the ornithine decarboxylase antizyme (Az). The interaction is enhanced upon BMP type I receptor activation and occur prior to the incorporation of HsN3 into the mature 20S proteasome. Furthermore, BMPs trigger the translocation of Smad1, HsN3 and Az into the nucleus, where the novel CBP/p300 repressor protein SNIP1 is further recruited to Smad1/HsN3/Az complex and degraded in a Smad1-, Smad4- and Az-dependent fashion. The degradation of the CBP/p300 repressor SNIP1 is likely an essential step for Smad1-, Smad4-mediated transcriptional activation, since increased SNIP1 expression inhibits BMP-induced gene responses. CONCLUSIONS: Our studies thus add two additional important functional partners of Smad1 into the signaling web of BMPs and also suggest a novel mechanism for Smad1 and Smad4 to co-modulate transcription via regulating proteasomal degradation of CBP/p300 repressor SNIP1.
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spelling pubmed-1174372002-07-26 A novel link between the proteasome pathway and the signal transduction pathway of the Bone Morphogenetic Proteins (BMPs) Lin, Yin Martin, Jennifer Gruendler, Cornelia Farley, Jennifer Meng, Xianwang Li, Bi-Yu Lechleider, Robert Huff, Carla Kim, Richard H Grasser, William Paralkar, Vishwas Wang, Tongwen BMC Cell Biol Methodology Article BACKGROUND: The intracellular signaling events of the Bone Morphogenetic Proteins (BMPs) involve the R-Smad family members Smad1, Smad5, Smad8 and the Co-Smad, Smad4. Smads are currently considered to be DNA-binding transcriptional modulators and shown to recruit the master transcriptional co-activator CBP/p300 for transcriptional activation. SNIP1 is a recently discovered novel repressor of CBP/p300. Currently, the detailed molecular mechanisms that allow R-Smads and Co-Smad to co-operatively modulate transcription events are not fully understood. RESULTS: Here we report a novel physical and functional link between Smad1 and the 26S proteasome that contributes to Smad1- and Smad4-mediated transcriptional regulation. Smad1 forms a complex with a proteasome β subunit HsN3 and the ornithine decarboxylase antizyme (Az). The interaction is enhanced upon BMP type I receptor activation and occur prior to the incorporation of HsN3 into the mature 20S proteasome. Furthermore, BMPs trigger the translocation of Smad1, HsN3 and Az into the nucleus, where the novel CBP/p300 repressor protein SNIP1 is further recruited to Smad1/HsN3/Az complex and degraded in a Smad1-, Smad4- and Az-dependent fashion. The degradation of the CBP/p300 repressor SNIP1 is likely an essential step for Smad1-, Smad4-mediated transcriptional activation, since increased SNIP1 expression inhibits BMP-induced gene responses. CONCLUSIONS: Our studies thus add two additional important functional partners of Smad1 into the signaling web of BMPs and also suggest a novel mechanism for Smad1 and Smad4 to co-modulate transcription via regulating proteasomal degradation of CBP/p300 repressor SNIP1. BioMed Central 2002-06-21 /pmc/articles/PMC117437/ /pubmed/12097147 http://dx.doi.org/10.1186/1471-2121-3-15 Text en Copyright © 2002 Lin et al; licensee BioMed Central Ltd. This is an Open Access article: verbatim copying and redistribution of this article are permitted in all media for any purpose, provided this notice is preserved along with the article's original URL.
spellingShingle Methodology Article
Lin, Yin
Martin, Jennifer
Gruendler, Cornelia
Farley, Jennifer
Meng, Xianwang
Li, Bi-Yu
Lechleider, Robert
Huff, Carla
Kim, Richard H
Grasser, William
Paralkar, Vishwas
Wang, Tongwen
A novel link between the proteasome pathway and the signal transduction pathway of the Bone Morphogenetic Proteins (BMPs)
title A novel link between the proteasome pathway and the signal transduction pathway of the Bone Morphogenetic Proteins (BMPs)
title_full A novel link between the proteasome pathway and the signal transduction pathway of the Bone Morphogenetic Proteins (BMPs)
title_fullStr A novel link between the proteasome pathway and the signal transduction pathway of the Bone Morphogenetic Proteins (BMPs)
title_full_unstemmed A novel link between the proteasome pathway and the signal transduction pathway of the Bone Morphogenetic Proteins (BMPs)
title_short A novel link between the proteasome pathway and the signal transduction pathway of the Bone Morphogenetic Proteins (BMPs)
title_sort novel link between the proteasome pathway and the signal transduction pathway of the bone morphogenetic proteins (bmps)
topic Methodology Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC117437/
https://www.ncbi.nlm.nih.gov/pubmed/12097147
http://dx.doi.org/10.1186/1471-2121-3-15
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