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RGS6 is an essential tumor suppressor that prevents bladder carcinogenesis by promoting p53 activation and DNMT1 downregulation

Urinary bladder cancer (UBC) is largely caused by exposure to toxic chemicals including those in cigarette smoke (i.e. BBN). An activating SNP in RGS6 is associated with a pronounced reduction in UBC risk, especially among smokers. However, the mechanism underlying this reduction remains unknown. He...

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Autores principales: Yang, Jianqi, Platt, Lance T., Maity, Biswanath, Ahlers, Katelin E., Luo, Zili, Lin, Zhibo, Chakravarti, Bandana, Ibeawuchi, Stella-Rita, Askeland, Ryan W., Bondaruk, Jolanta, Czerniak, Bogdan A., Fisher, Rory A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5342467/
https://www.ncbi.nlm.nih.gov/pubmed/27713144
http://dx.doi.org/10.18632/oncotarget.12473
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author Yang, Jianqi
Platt, Lance T.
Maity, Biswanath
Ahlers, Katelin E.
Luo, Zili
Lin, Zhibo
Chakravarti, Bandana
Ibeawuchi, Stella-Rita
Askeland, Ryan W.
Bondaruk, Jolanta
Czerniak, Bogdan A.
Fisher, Rory A.
author_facet Yang, Jianqi
Platt, Lance T.
Maity, Biswanath
Ahlers, Katelin E.
Luo, Zili
Lin, Zhibo
Chakravarti, Bandana
Ibeawuchi, Stella-Rita
Askeland, Ryan W.
Bondaruk, Jolanta
Czerniak, Bogdan A.
Fisher, Rory A.
author_sort Yang, Jianqi
collection PubMed
description Urinary bladder cancer (UBC) is largely caused by exposure to toxic chemicals including those in cigarette smoke (i.e. BBN). An activating SNP in RGS6 is associated with a pronounced reduction in UBC risk, especially among smokers. However, the mechanism underlying this reduction remains unknown. Here we demonstrate that RGS6 is robustly expressed in human urothelium, where urothelial cell carcinoma originates, and is downregulated in human UBC. Utilizing RGS6(−/−) mice we interrogated a possible role for RGS6 as a tumor suppressor using the BBN-induced bladder carcinogenesis model that closely recapitulates human disease. As in humans, RGS6 is robustly expressed in mouse urothelium. RGS6 loss dramatically accelerates BBN-induced bladder carcinogenesis, with RGS6(−/−) mice consistently displaying more advanced pathological lesions than RGS6(+/+) mice. Furthermore, BBN treatment promotes urothelial RGS6 mRNA and protein downregulation. RGS6 loss impairs p53 activation and promotes aberrant accumulation of oncogenic protein DNMT1 in urothelium. Tumor suppressor RASSF1A, a DNMT1-regulated gene, is also silenced, likely via methylation of its promoter during BBN exposure. We hypothesize that this BBN-induced RGS6 loss represents a critical hit in UBC as it irrevocably impairs the anti-proliferative actions of the ATM/p53 and RASSF1A pathways. Consistent with these findings, RGS6(−/−) mice treated with CP-31398, a p53-stablizing agent, and/or 5-Aza, a DNMT1 inhibitor, are protected from BBN-induced tumorigenesis. Together, our data identify RGS6 as a master tumor suppressor modulating two critical signaling pathways that are often dysregulated in UBC; therefore, RGS6 represents a potential novel biomarker for UBC diagnosis/prognosis and an appealing new target in its treatment.
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spelling pubmed-53424672017-03-24 RGS6 is an essential tumor suppressor that prevents bladder carcinogenesis by promoting p53 activation and DNMT1 downregulation Yang, Jianqi Platt, Lance T. Maity, Biswanath Ahlers, Katelin E. Luo, Zili Lin, Zhibo Chakravarti, Bandana Ibeawuchi, Stella-Rita Askeland, Ryan W. Bondaruk, Jolanta Czerniak, Bogdan A. Fisher, Rory A. Oncotarget Priority Research Paper Urinary bladder cancer (UBC) is largely caused by exposure to toxic chemicals including those in cigarette smoke (i.e. BBN). An activating SNP in RGS6 is associated with a pronounced reduction in UBC risk, especially among smokers. However, the mechanism underlying this reduction remains unknown. Here we demonstrate that RGS6 is robustly expressed in human urothelium, where urothelial cell carcinoma originates, and is downregulated in human UBC. Utilizing RGS6(−/−) mice we interrogated a possible role for RGS6 as a tumor suppressor using the BBN-induced bladder carcinogenesis model that closely recapitulates human disease. As in humans, RGS6 is robustly expressed in mouse urothelium. RGS6 loss dramatically accelerates BBN-induced bladder carcinogenesis, with RGS6(−/−) mice consistently displaying more advanced pathological lesions than RGS6(+/+) mice. Furthermore, BBN treatment promotes urothelial RGS6 mRNA and protein downregulation. RGS6 loss impairs p53 activation and promotes aberrant accumulation of oncogenic protein DNMT1 in urothelium. Tumor suppressor RASSF1A, a DNMT1-regulated gene, is also silenced, likely via methylation of its promoter during BBN exposure. We hypothesize that this BBN-induced RGS6 loss represents a critical hit in UBC as it irrevocably impairs the anti-proliferative actions of the ATM/p53 and RASSF1A pathways. Consistent with these findings, RGS6(−/−) mice treated with CP-31398, a p53-stablizing agent, and/or 5-Aza, a DNMT1 inhibitor, are protected from BBN-induced tumorigenesis. Together, our data identify RGS6 as a master tumor suppressor modulating two critical signaling pathways that are often dysregulated in UBC; therefore, RGS6 represents a potential novel biomarker for UBC diagnosis/prognosis and an appealing new target in its treatment. Impact Journals LLC 2016-10-04 /pmc/articles/PMC5342467/ /pubmed/27713144 http://dx.doi.org/10.18632/oncotarget.12473 Text en Copyright: © 2016 Yang et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Priority Research Paper
Yang, Jianqi
Platt, Lance T.
Maity, Biswanath
Ahlers, Katelin E.
Luo, Zili
Lin, Zhibo
Chakravarti, Bandana
Ibeawuchi, Stella-Rita
Askeland, Ryan W.
Bondaruk, Jolanta
Czerniak, Bogdan A.
Fisher, Rory A.
RGS6 is an essential tumor suppressor that prevents bladder carcinogenesis by promoting p53 activation and DNMT1 downregulation
title RGS6 is an essential tumor suppressor that prevents bladder carcinogenesis by promoting p53 activation and DNMT1 downregulation
title_full RGS6 is an essential tumor suppressor that prevents bladder carcinogenesis by promoting p53 activation and DNMT1 downregulation
title_fullStr RGS6 is an essential tumor suppressor that prevents bladder carcinogenesis by promoting p53 activation and DNMT1 downregulation
title_full_unstemmed RGS6 is an essential tumor suppressor that prevents bladder carcinogenesis by promoting p53 activation and DNMT1 downregulation
title_short RGS6 is an essential tumor suppressor that prevents bladder carcinogenesis by promoting p53 activation and DNMT1 downregulation
title_sort rgs6 is an essential tumor suppressor that prevents bladder carcinogenesis by promoting p53 activation and dnmt1 downregulation
topic Priority Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5342467/
https://www.ncbi.nlm.nih.gov/pubmed/27713144
http://dx.doi.org/10.18632/oncotarget.12473
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