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lncRNA SNHG1 Promotes Basal Bladder Cancer Invasion via Interaction with PP2A Catalytic Subunit and Induction of Autophagy

Although basal muscle-invasive bladder cancers (MIBCs) are predominant, are more aggressive, and have bad prognoses, molecular mechanisms underlying how basal MIBC formation/progression have been barely explored. In the present study, SNHG1, a long non-coding RNA, was shown to be expressed at higher...

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Autores principales: Xu, Jiheng, Yang, Rui, Hua, Xiaohui, Huang, Maowen, Tian, Zhongxian, Li, Jingxia, Lam, Hoi Yun, Jiang, Guosong, Cohen, Mitchell, Huang, Chuanshu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7340968/
https://www.ncbi.nlm.nih.gov/pubmed/32650234
http://dx.doi.org/10.1016/j.omtn.2020.06.010
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author Xu, Jiheng
Yang, Rui
Hua, Xiaohui
Huang, Maowen
Tian, Zhongxian
Li, Jingxia
Lam, Hoi Yun
Jiang, Guosong
Cohen, Mitchell
Huang, Chuanshu
author_facet Xu, Jiheng
Yang, Rui
Hua, Xiaohui
Huang, Maowen
Tian, Zhongxian
Li, Jingxia
Lam, Hoi Yun
Jiang, Guosong
Cohen, Mitchell
Huang, Chuanshu
author_sort Xu, Jiheng
collection PubMed
description Although basal muscle-invasive bladder cancers (MIBCs) are predominant, are more aggressive, and have bad prognoses, molecular mechanisms underlying how basal MIBC formation/progression have been barely explored. In the present study, SNHG1, a long non-coding RNA, was shown to be expressed at higher levels in basal MIBC cells than in other types of bladder BC cells, and its presence could promote basal MIBC cell invasion. The results revealed that SNHG1 specifically induced MMP2 expression via increasing its transcription and mRNA stability. In one mechanism, SNHG1 directly bound with PP2A catalytic subunit (PP2A-c) to inhibit interactions of PP2A-c with c-Jun and then promoted c-Jun phosphorylation that, in turn, mediated MMP2 transcription. In another mechanism, SNHG1 markedly induced autophagy in the cells via induction of increases in the abundance of autophagy-related proteins. The latter initiated autophagy and further abolished miR-34a stability, which reduced overall miR-34a binding directly to the 3′ UTR of MMP2 mRNA, thereby promoting MMP2 mRNA stabilization. These results provided novel insight into understanding the specific functions of SNHG1 in basal MIBC. Such findings may ultimately prove highly significant for the design/synthesis of new SNHG1-based compounds for the treatment of basal MIBC patients.
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spelling pubmed-73409682020-07-14 lncRNA SNHG1 Promotes Basal Bladder Cancer Invasion via Interaction with PP2A Catalytic Subunit and Induction of Autophagy Xu, Jiheng Yang, Rui Hua, Xiaohui Huang, Maowen Tian, Zhongxian Li, Jingxia Lam, Hoi Yun Jiang, Guosong Cohen, Mitchell Huang, Chuanshu Mol Ther Nucleic Acids Article Although basal muscle-invasive bladder cancers (MIBCs) are predominant, are more aggressive, and have bad prognoses, molecular mechanisms underlying how basal MIBC formation/progression have been barely explored. In the present study, SNHG1, a long non-coding RNA, was shown to be expressed at higher levels in basal MIBC cells than in other types of bladder BC cells, and its presence could promote basal MIBC cell invasion. The results revealed that SNHG1 specifically induced MMP2 expression via increasing its transcription and mRNA stability. In one mechanism, SNHG1 directly bound with PP2A catalytic subunit (PP2A-c) to inhibit interactions of PP2A-c with c-Jun and then promoted c-Jun phosphorylation that, in turn, mediated MMP2 transcription. In another mechanism, SNHG1 markedly induced autophagy in the cells via induction of increases in the abundance of autophagy-related proteins. The latter initiated autophagy and further abolished miR-34a stability, which reduced overall miR-34a binding directly to the 3′ UTR of MMP2 mRNA, thereby promoting MMP2 mRNA stabilization. These results provided novel insight into understanding the specific functions of SNHG1 in basal MIBC. Such findings may ultimately prove highly significant for the design/synthesis of new SNHG1-based compounds for the treatment of basal MIBC patients. American Society of Gene & Cell Therapy 2020-06-18 /pmc/articles/PMC7340968/ /pubmed/32650234 http://dx.doi.org/10.1016/j.omtn.2020.06.010 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 Article
Xu, Jiheng
Yang, Rui
Hua, Xiaohui
Huang, Maowen
Tian, Zhongxian
Li, Jingxia
Lam, Hoi Yun
Jiang, Guosong
Cohen, Mitchell
Huang, Chuanshu
lncRNA SNHG1 Promotes Basal Bladder Cancer Invasion via Interaction with PP2A Catalytic Subunit and Induction of Autophagy
title lncRNA SNHG1 Promotes Basal Bladder Cancer Invasion via Interaction with PP2A Catalytic Subunit and Induction of Autophagy
title_full lncRNA SNHG1 Promotes Basal Bladder Cancer Invasion via Interaction with PP2A Catalytic Subunit and Induction of Autophagy
title_fullStr lncRNA SNHG1 Promotes Basal Bladder Cancer Invasion via Interaction with PP2A Catalytic Subunit and Induction of Autophagy
title_full_unstemmed lncRNA SNHG1 Promotes Basal Bladder Cancer Invasion via Interaction with PP2A Catalytic Subunit and Induction of Autophagy
title_short lncRNA SNHG1 Promotes Basal Bladder Cancer Invasion via Interaction with PP2A Catalytic Subunit and Induction of Autophagy
title_sort lncrna snhg1 promotes basal bladder cancer invasion via interaction with pp2a catalytic subunit and induction of autophagy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7340968/
https://www.ncbi.nlm.nih.gov/pubmed/32650234
http://dx.doi.org/10.1016/j.omtn.2020.06.010
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