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Recurrent ZNF83-E293V Mutation Promotes Bladder Cancer Progression through the NF-κB Pathway via Transcriptional Dysregulation of S100A8

Urothelial carcinoma (UC) is the predominant form of bladder cancer. Significant molecular heterogeneity caused by diverse molecular alterations brings about large variations in the response to treatment in UC. An improved understanding of the genetic mechanisms underlying the development and progre...

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Autores principales: Lyu, Zhao J., Wang, Ying, Huang, Jin L., Chen, Miao, Wu, Sha Y., Yan, Qian, Zhang, Yu, Tang, Ying, Jiang, Chen, Li, Lei, Jia, Yi Z., Liu, Yu C., Mei, Hong B., Wang, Feng, Li, Ren H., Chen, Ya C., Lin, Xiang, Cai, Zhi M., Guan, Xin Y.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7791007/
https://www.ncbi.nlm.nih.gov/pubmed/33002420
http://dx.doi.org/10.1016/j.ymthe.2020.09.004
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author Lyu, Zhao J.
Wang, Ying
Huang, Jin L.
Chen, Miao
Wu, Sha Y.
Yan, Qian
Zhang, Yu
Tang, Ying
Jiang, Chen
Li, Lei
Jia, Yi Z.
Liu, Yu C.
Mei, Hong B.
Wang, Feng
Li, Ren H.
Chen, Ya C.
Lin, Xiang
Cai, Zhi M.
Guan, Xin Y.
author_facet Lyu, Zhao J.
Wang, Ying
Huang, Jin L.
Chen, Miao
Wu, Sha Y.
Yan, Qian
Zhang, Yu
Tang, Ying
Jiang, Chen
Li, Lei
Jia, Yi Z.
Liu, Yu C.
Mei, Hong B.
Wang, Feng
Li, Ren H.
Chen, Ya C.
Lin, Xiang
Cai, Zhi M.
Guan, Xin Y.
author_sort Lyu, Zhao J.
collection PubMed
description Urothelial carcinoma (UC) is the predominant form of bladder cancer. Significant molecular heterogeneity caused by diverse molecular alterations brings about large variations in the response to treatment in UC. An improved understanding of the genetic mechanisms underlying the development and progression of UC is essential. Through deep analysis of next-generation sequencing data of 99 UC patients, we found that 18% of cases had recurrent somatic mutations in zinc finger protein gene zinc finger protein 83 (ZNF83). ZNF83 mutations were correlated with poor prognosis of UC. We also found a hotspot mutation, p.E293V, in the evolutionarily well-conserved region of ZNF83. ZNF83-E293V increased tumor growth and reduced the apoptosis of UC cells compared to wild-type ZNF83 both in vitro and in mice xenografted tumors. ZNF83-E293V activated nuclear factor κB (NF-κB) more potently than did the wild-type protein owing to its decreased transcriptional repression for S100A8. The NF-κB inhibitors could pharmacologically block the tumor growth in mice engrafted with ZNF83-E293V-transfected UC cells. These findings provide a mechanistic insight and a potential therapeutic strategy for UC, which established a foundation for using the ZNF83-E293V mutation as a predictive biomarker of therapeutic response from NF-κB inhibitors.
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spelling pubmed-77910072022-01-06 Recurrent ZNF83-E293V Mutation Promotes Bladder Cancer Progression through the NF-κB Pathway via Transcriptional Dysregulation of S100A8 Lyu, Zhao J. Wang, Ying Huang, Jin L. Chen, Miao Wu, Sha Y. Yan, Qian Zhang, Yu Tang, Ying Jiang, Chen Li, Lei Jia, Yi Z. Liu, Yu C. Mei, Hong B. Wang, Feng Li, Ren H. Chen, Ya C. Lin, Xiang Cai, Zhi M. Guan, Xin Y. Mol Ther Original Article Urothelial carcinoma (UC) is the predominant form of bladder cancer. Significant molecular heterogeneity caused by diverse molecular alterations brings about large variations in the response to treatment in UC. An improved understanding of the genetic mechanisms underlying the development and progression of UC is essential. Through deep analysis of next-generation sequencing data of 99 UC patients, we found that 18% of cases had recurrent somatic mutations in zinc finger protein gene zinc finger protein 83 (ZNF83). ZNF83 mutations were correlated with poor prognosis of UC. We also found a hotspot mutation, p.E293V, in the evolutionarily well-conserved region of ZNF83. ZNF83-E293V increased tumor growth and reduced the apoptosis of UC cells compared to wild-type ZNF83 both in vitro and in mice xenografted tumors. ZNF83-E293V activated nuclear factor κB (NF-κB) more potently than did the wild-type protein owing to its decreased transcriptional repression for S100A8. The NF-κB inhibitors could pharmacologically block the tumor growth in mice engrafted with ZNF83-E293V-transfected UC cells. These findings provide a mechanistic insight and a potential therapeutic strategy for UC, which established a foundation for using the ZNF83-E293V mutation as a predictive biomarker of therapeutic response from NF-κB inhibitors. American Society of Gene & Cell Therapy 2021-01-06 2020-09-05 /pmc/articles/PMC7791007/ /pubmed/33002420 http://dx.doi.org/10.1016/j.ymthe.2020.09.004 Text en © 2020 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Lyu, Zhao J.
Wang, Ying
Huang, Jin L.
Chen, Miao
Wu, Sha Y.
Yan, Qian
Zhang, Yu
Tang, Ying
Jiang, Chen
Li, Lei
Jia, Yi Z.
Liu, Yu C.
Mei, Hong B.
Wang, Feng
Li, Ren H.
Chen, Ya C.
Lin, Xiang
Cai, Zhi M.
Guan, Xin Y.
Recurrent ZNF83-E293V Mutation Promotes Bladder Cancer Progression through the NF-κB Pathway via Transcriptional Dysregulation of S100A8
title Recurrent ZNF83-E293V Mutation Promotes Bladder Cancer Progression through the NF-κB Pathway via Transcriptional Dysregulation of S100A8
title_full Recurrent ZNF83-E293V Mutation Promotes Bladder Cancer Progression through the NF-κB Pathway via Transcriptional Dysregulation of S100A8
title_fullStr Recurrent ZNF83-E293V Mutation Promotes Bladder Cancer Progression through the NF-κB Pathway via Transcriptional Dysregulation of S100A8
title_full_unstemmed Recurrent ZNF83-E293V Mutation Promotes Bladder Cancer Progression through the NF-κB Pathway via Transcriptional Dysregulation of S100A8
title_short Recurrent ZNF83-E293V Mutation Promotes Bladder Cancer Progression through the NF-κB Pathway via Transcriptional Dysregulation of S100A8
title_sort recurrent znf83-e293v mutation promotes bladder cancer progression through the nf-κb pathway via transcriptional dysregulation of s100a8
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7791007/
https://www.ncbi.nlm.nih.gov/pubmed/33002420
http://dx.doi.org/10.1016/j.ymthe.2020.09.004
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