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Epigenetic Silencing of β-Spectrin, a TGF-β Signaling/Scaffolding Protein in a Human Cancer Stem Cell Disorder: BECKWITH-WIEDEMANN SYNDROME
Hereditary cancer syndromes provide powerful insights into dysfunctional signaling pathways that lead to sporadic cancers. Beckwith-Wiedemann syndrome (BWS) is a hereditary human cancer stem cell syndrome currently linked to deregulated imprinting at chromosome 11p15 and uniparental disomy. However,...
Autores principales: | , , , , , , , , , , , , , , , |
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Formato: | Texto |
Lenguaje: | English |
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American Society for Biochemistry and Molecular Biology
2010
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2975233/ https://www.ncbi.nlm.nih.gov/pubmed/20739274 http://dx.doi.org/10.1074/jbc.M110.162347 |
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author | Yao, Zhi-Xing Jogunoori, Wilma Choufani, Sanaa Rashid, Asif Blake, Tiffany Yao, Wenguo Kreishman, Peter Amin, Rupen Sidawy, Anton A. Evans, Stephen R. T. Finegold, Milton Reddy, E. Premkumar Mishra, Bibhuti Weksberg, Rosanna Kumar, Rakesh Mishra, Lopa |
author_facet | Yao, Zhi-Xing Jogunoori, Wilma Choufani, Sanaa Rashid, Asif Blake, Tiffany Yao, Wenguo Kreishman, Peter Amin, Rupen Sidawy, Anton A. Evans, Stephen R. T. Finegold, Milton Reddy, E. Premkumar Mishra, Bibhuti Weksberg, Rosanna Kumar, Rakesh Mishra, Lopa |
author_sort | Yao, Zhi-Xing |
collection | PubMed |
description | Hereditary cancer syndromes provide powerful insights into dysfunctional signaling pathways that lead to sporadic cancers. Beckwith-Wiedemann syndrome (BWS) is a hereditary human cancer stem cell syndrome currently linked to deregulated imprinting at chromosome 11p15 and uniparental disomy. However, causal molecular defects and genetic models have remained elusive to date in the majority of cases. The non-pleckstrin homology domain β-spectrin (β2SP) (the official name for human is Spectrin, beta, nonerythrocytic 1 (SPTBN1), isoform 2; the official name for mouse is Spectrin beta 2 (Spnb2), isoform 2), a scaffolding protein, functions as a potent TGF-β signaling member adaptor in tumor suppression and development. Yet, the role of the β2SP in human tumor syndromes remains unclear. Here, we report that β2SP(+/−) mice are born with many phenotypic characteristics observed in BWS patients, suggesting that β2SP mutant mice phenocopy BWS, and β2SP loss could be one of the mechanisms associated with BWS. Our results also suggest that epigenetic silencing of β2SP is a new potential causal factor in human BWS patients. Furthermore, β2SP(+/−) mice provide an important animal model for BWS, as well as sporadic cancers associated with it, including lethal gastrointestinal and pancreatic cancer. Thus, these studies could lead to further insight into defects generated by dysfunctional stem cells and identification of new treatment strategies and functional markers for the early detection of these lethal cancers that otherwise cannot be detected at an early stage. |
format | Text |
id | pubmed-2975233 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2010 |
publisher | American Society for Biochemistry and Molecular Biology |
record_format | MEDLINE/PubMed |
spelling | pubmed-29752332011-01-04 Epigenetic Silencing of β-Spectrin, a TGF-β Signaling/Scaffolding Protein in a Human Cancer Stem Cell Disorder: BECKWITH-WIEDEMANN SYNDROME Yao, Zhi-Xing Jogunoori, Wilma Choufani, Sanaa Rashid, Asif Blake, Tiffany Yao, Wenguo Kreishman, Peter Amin, Rupen Sidawy, Anton A. Evans, Stephen R. T. Finegold, Milton Reddy, E. Premkumar Mishra, Bibhuti Weksberg, Rosanna Kumar, Rakesh Mishra, Lopa J Biol Chem Molecular Bases of Disease Hereditary cancer syndromes provide powerful insights into dysfunctional signaling pathways that lead to sporadic cancers. Beckwith-Wiedemann syndrome (BWS) is a hereditary human cancer stem cell syndrome currently linked to deregulated imprinting at chromosome 11p15 and uniparental disomy. However, causal molecular defects and genetic models have remained elusive to date in the majority of cases. The non-pleckstrin homology domain β-spectrin (β2SP) (the official name for human is Spectrin, beta, nonerythrocytic 1 (SPTBN1), isoform 2; the official name for mouse is Spectrin beta 2 (Spnb2), isoform 2), a scaffolding protein, functions as a potent TGF-β signaling member adaptor in tumor suppression and development. Yet, the role of the β2SP in human tumor syndromes remains unclear. Here, we report that β2SP(+/−) mice are born with many phenotypic characteristics observed in BWS patients, suggesting that β2SP mutant mice phenocopy BWS, and β2SP loss could be one of the mechanisms associated with BWS. Our results also suggest that epigenetic silencing of β2SP is a new potential causal factor in human BWS patients. Furthermore, β2SP(+/−) mice provide an important animal model for BWS, as well as sporadic cancers associated with it, including lethal gastrointestinal and pancreatic cancer. Thus, these studies could lead to further insight into defects generated by dysfunctional stem cells and identification of new treatment strategies and functional markers for the early detection of these lethal cancers that otherwise cannot be detected at an early stage. American Society for Biochemistry and Molecular Biology 2010-11-12 2010-08-25 /pmc/articles/PMC2975233/ /pubmed/20739274 http://dx.doi.org/10.1074/jbc.M110.162347 Text en © 2010 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles |
spellingShingle | Molecular Bases of Disease Yao, Zhi-Xing Jogunoori, Wilma Choufani, Sanaa Rashid, Asif Blake, Tiffany Yao, Wenguo Kreishman, Peter Amin, Rupen Sidawy, Anton A. Evans, Stephen R. T. Finegold, Milton Reddy, E. Premkumar Mishra, Bibhuti Weksberg, Rosanna Kumar, Rakesh Mishra, Lopa Epigenetic Silencing of β-Spectrin, a TGF-β Signaling/Scaffolding Protein in a Human Cancer Stem Cell Disorder: BECKWITH-WIEDEMANN SYNDROME |
title | Epigenetic Silencing of β-Spectrin, a TGF-β Signaling/Scaffolding Protein in a Human Cancer Stem Cell Disorder: BECKWITH-WIEDEMANN SYNDROME |
title_full | Epigenetic Silencing of β-Spectrin, a TGF-β Signaling/Scaffolding Protein in a Human Cancer Stem Cell Disorder: BECKWITH-WIEDEMANN SYNDROME |
title_fullStr | Epigenetic Silencing of β-Spectrin, a TGF-β Signaling/Scaffolding Protein in a Human Cancer Stem Cell Disorder: BECKWITH-WIEDEMANN SYNDROME |
title_full_unstemmed | Epigenetic Silencing of β-Spectrin, a TGF-β Signaling/Scaffolding Protein in a Human Cancer Stem Cell Disorder: BECKWITH-WIEDEMANN SYNDROME |
title_short | Epigenetic Silencing of β-Spectrin, a TGF-β Signaling/Scaffolding Protein in a Human Cancer Stem Cell Disorder: BECKWITH-WIEDEMANN SYNDROME |
title_sort | epigenetic silencing of β-spectrin, a tgf-β signaling/scaffolding protein in a human cancer stem cell disorder: beckwith-wiedemann syndrome |
topic | Molecular Bases of Disease |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2975233/ https://www.ncbi.nlm.nih.gov/pubmed/20739274 http://dx.doi.org/10.1074/jbc.M110.162347 |
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