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QKI‐6 inhibits bladder cancer malignant behaviours through down‐regulating E2F3 and NF‐κB signalling

Quaking homolog (QKI) is a member of the RNA‐binding signal transduction and activator of proteins family. Previous studies showed that QKI possesses the tumour suppressor activity in human cancers by interacting with the 3'‐untraslated region (3'‐UTR) of various gene transcripts via the S...

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Autores principales: Shi, Fei, Deng, Zheng, Zhou, Zheng, Jiang, Chen‐Yi, Zhao, Rui‐Zhe, Sun, Feng, Cui, Di, Bei, Xiao‐Yu, Yang, Bo‐Yu, Sun, Qian, Wang, Xing‐Jie, Wu, Qi, Xia, Shu‐Jie, Han, Bang‐Min
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6787450/
https://www.ncbi.nlm.nih.gov/pubmed/31449345
http://dx.doi.org/10.1111/jcmm.14481
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author Shi, Fei
Deng, Zheng
Zhou, Zheng
Jiang, Chen‐Yi
Zhao, Rui‐Zhe
Sun, Feng
Cui, Di
Bei, Xiao‐Yu
Yang, Bo‐Yu
Sun, Qian
Wang, Xing‐Jie
Wu, Qi
Xia, Shu‐Jie
Han, Bang‐Min
author_facet Shi, Fei
Deng, Zheng
Zhou, Zheng
Jiang, Chen‐Yi
Zhao, Rui‐Zhe
Sun, Feng
Cui, Di
Bei, Xiao‐Yu
Yang, Bo‐Yu
Sun, Qian
Wang, Xing‐Jie
Wu, Qi
Xia, Shu‐Jie
Han, Bang‐Min
author_sort Shi, Fei
collection PubMed
description Quaking homolog (QKI) is a member of the RNA‐binding signal transduction and activator of proteins family. Previous studies showed that QKI possesses the tumour suppressor activity in human cancers by interacting with the 3'‐untraslated region (3'‐UTR) of various gene transcripts via the STAR domain. This study first assessed the association of QKI‐6 expression with clinicopathological and survival data from bladder cancer patients and then investigated the underlying molecular mechanisms. Bladder cancer tissues (n = 223) were subjected to immunohistochemistry, and tumour cell lines and nude mice were used for different in vitro and in vivo assays following QKI‐6 overexpression or knockdown. QKI‐6 down‐regulation was associated with advanced tumour TNM stages and poor patient overall survival. QKI‐6 overexpression inhibited bladder cancer cell growth and invasion capacity, but induced tumour cell apoptosis and cell cycle arrest. Furthermore, ectopic expression of QKI‐6 reduced tumour xenograft growth and expression of proliferation markers, Ki67 and PCNA. However, knockdown of QKI‐6 expression had opposite effects in vitro and in vivo. QKI‐6 inhibited expression of E2 transcription factor 3 (E2F3) by directly binding to the E2F3 3'‐UTR, whereas E2F3 induced QKI‐6 transcription by binding to the QKI‐6 promoter in negative feedback mechanism. QKI‐6 expression also suppressed activity and expression of nuclear factor‐κB (NF‐κB) signalling proteins in vitro, implying a novel multilevel regulatory network downstream of QKI‐6. In conclusion, QKI‐6 down‐regulation contributes to bladder cancer development and progression.
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spelling pubmed-67874502019-10-17 QKI‐6 inhibits bladder cancer malignant behaviours through down‐regulating E2F3 and NF‐κB signalling Shi, Fei Deng, Zheng Zhou, Zheng Jiang, Chen‐Yi Zhao, Rui‐Zhe Sun, Feng Cui, Di Bei, Xiao‐Yu Yang, Bo‐Yu Sun, Qian Wang, Xing‐Jie Wu, Qi Xia, Shu‐Jie Han, Bang‐Min J Cell Mol Med Original Articles Quaking homolog (QKI) is a member of the RNA‐binding signal transduction and activator of proteins family. Previous studies showed that QKI possesses the tumour suppressor activity in human cancers by interacting with the 3'‐untraslated region (3'‐UTR) of various gene transcripts via the STAR domain. This study first assessed the association of QKI‐6 expression with clinicopathological and survival data from bladder cancer patients and then investigated the underlying molecular mechanisms. Bladder cancer tissues (n = 223) were subjected to immunohistochemistry, and tumour cell lines and nude mice were used for different in vitro and in vivo assays following QKI‐6 overexpression or knockdown. QKI‐6 down‐regulation was associated with advanced tumour TNM stages and poor patient overall survival. QKI‐6 overexpression inhibited bladder cancer cell growth and invasion capacity, but induced tumour cell apoptosis and cell cycle arrest. Furthermore, ectopic expression of QKI‐6 reduced tumour xenograft growth and expression of proliferation markers, Ki67 and PCNA. However, knockdown of QKI‐6 expression had opposite effects in vitro and in vivo. QKI‐6 inhibited expression of E2 transcription factor 3 (E2F3) by directly binding to the E2F3 3'‐UTR, whereas E2F3 induced QKI‐6 transcription by binding to the QKI‐6 promoter in negative feedback mechanism. QKI‐6 expression also suppressed activity and expression of nuclear factor‐κB (NF‐κB) signalling proteins in vitro, implying a novel multilevel regulatory network downstream of QKI‐6. In conclusion, QKI‐6 down‐regulation contributes to bladder cancer development and progression. John Wiley and Sons Inc. 2019-08-26 2019-10 /pmc/articles/PMC6787450/ /pubmed/31449345 http://dx.doi.org/10.1111/jcmm.14481 Text en © 2019 The Authors. Journal of Cellular and Molecular Medicine published by John Wiley & Sons Ltd and Foundation for Cellular and Molecular Medicine. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Shi, Fei
Deng, Zheng
Zhou, Zheng
Jiang, Chen‐Yi
Zhao, Rui‐Zhe
Sun, Feng
Cui, Di
Bei, Xiao‐Yu
Yang, Bo‐Yu
Sun, Qian
Wang, Xing‐Jie
Wu, Qi
Xia, Shu‐Jie
Han, Bang‐Min
QKI‐6 inhibits bladder cancer malignant behaviours through down‐regulating E2F3 and NF‐κB signalling
title QKI‐6 inhibits bladder cancer malignant behaviours through down‐regulating E2F3 and NF‐κB signalling
title_full QKI‐6 inhibits bladder cancer malignant behaviours through down‐regulating E2F3 and NF‐κB signalling
title_fullStr QKI‐6 inhibits bladder cancer malignant behaviours through down‐regulating E2F3 and NF‐κB signalling
title_full_unstemmed QKI‐6 inhibits bladder cancer malignant behaviours through down‐regulating E2F3 and NF‐κB signalling
title_short QKI‐6 inhibits bladder cancer malignant behaviours through down‐regulating E2F3 and NF‐κB signalling
title_sort qki‐6 inhibits bladder cancer malignant behaviours through down‐regulating e2f3 and nf‐κb signalling
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6787450/
https://www.ncbi.nlm.nih.gov/pubmed/31449345
http://dx.doi.org/10.1111/jcmm.14481
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