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MiR-4638-5p inhibits castration resistance of prostate cancer through repressing Kidins220 expression and PI3K/AKT pathway activity

MicroRNAs (miRNAs) are short, conserved segments of non-coding RNA which play a significant role in prostate cancer development and progression. To identify miRNAs associated with castration resistance, we performed miRNA microarray analysis comparing castration resistant prostate cancer (CRPC) with...

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Autores principales: Wang, Yang, Shao, Ning, Mao, Xueying, Zhu, Minmin, Fan, Weifei, Shen, Zhixiang, Xiao, Rong, Wang, Chuncai, Bao, Wenping, Xu, Xinyu, Yang, Chun, Dong, Jian, Yu, Deshui, Wu, Yan, Zhu, Caixia, Wen, Liting, Lu, Xiaojie, Lu, Yong-Jie, Feng, Ninghan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5216953/
https://www.ncbi.nlm.nih.gov/pubmed/27329728
http://dx.doi.org/10.18632/oncotarget.10165
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author Wang, Yang
Shao, Ning
Mao, Xueying
Zhu, Minmin
Fan, Weifei
Shen, Zhixiang
Xiao, Rong
Wang, Chuncai
Bao, Wenping
Xu, Xinyu
Yang, Chun
Dong, Jian
Yu, Deshui
Wu, Yan
Zhu, Caixia
Wen, Liting
Lu, Xiaojie
Lu, Yong-Jie
Feng, Ninghan
author_facet Wang, Yang
Shao, Ning
Mao, Xueying
Zhu, Minmin
Fan, Weifei
Shen, Zhixiang
Xiao, Rong
Wang, Chuncai
Bao, Wenping
Xu, Xinyu
Yang, Chun
Dong, Jian
Yu, Deshui
Wu, Yan
Zhu, Caixia
Wen, Liting
Lu, Xiaojie
Lu, Yong-Jie
Feng, Ninghan
author_sort Wang, Yang
collection PubMed
description MicroRNAs (miRNAs) are short, conserved segments of non-coding RNA which play a significant role in prostate cancer development and progression. To identify miRNAs associated with castration resistance, we performed miRNA microarray analysis comparing castration resistant prostate cancer (CRPC) with androgen dependent prostate cancer (ADPC). We identified common underexpression of miR-4638-5p in CRPC compared to ADPC samples, which were further confirmed by quantitative PCR analysis. The role of miR-4638-5p in prostate cancer androgen-independent growth has been demonstrated both in vitro and in vivo. We also identified Kidins220 as a target gene directly regulated by miR-4638-5p and shRNA-mediated knockdown of Kidins220 phenocopied miR-4638-5p restoration. Subsequently, we revealed that Kidins220 activates PI3K/AKT pathway, which plays a key role in CRPC. Loss of miR- 4638-5p may lead to CRPC through the activity of Kidins220 and PI3K/AKT pathway. Furthermore, we found that miR-4638-5p, through regulating Kidins220 and the downstream activity of VEGF and PI3K/AKT pathway, influences prostate cancer progression via angiogenesis. The identification of miR-4638-5p down-regulation in CRPC and the understanding of the functional role of miR-4638-5p and its downstream genes/pathways have the potential to develop biomarkers for CRPC onset and to identify novel targets for novel forms of treatments of this lethal form of PCa.
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spelling pubmed-52169532017-01-17 MiR-4638-5p inhibits castration resistance of prostate cancer through repressing Kidins220 expression and PI3K/AKT pathway activity Wang, Yang Shao, Ning Mao, Xueying Zhu, Minmin Fan, Weifei Shen, Zhixiang Xiao, Rong Wang, Chuncai Bao, Wenping Xu, Xinyu Yang, Chun Dong, Jian Yu, Deshui Wu, Yan Zhu, Caixia Wen, Liting Lu, Xiaojie Lu, Yong-Jie Feng, Ninghan Oncotarget Research Paper MicroRNAs (miRNAs) are short, conserved segments of non-coding RNA which play a significant role in prostate cancer development and progression. To identify miRNAs associated with castration resistance, we performed miRNA microarray analysis comparing castration resistant prostate cancer (CRPC) with androgen dependent prostate cancer (ADPC). We identified common underexpression of miR-4638-5p in CRPC compared to ADPC samples, which were further confirmed by quantitative PCR analysis. The role of miR-4638-5p in prostate cancer androgen-independent growth has been demonstrated both in vitro and in vivo. We also identified Kidins220 as a target gene directly regulated by miR-4638-5p and shRNA-mediated knockdown of Kidins220 phenocopied miR-4638-5p restoration. Subsequently, we revealed that Kidins220 activates PI3K/AKT pathway, which plays a key role in CRPC. Loss of miR- 4638-5p may lead to CRPC through the activity of Kidins220 and PI3K/AKT pathway. Furthermore, we found that miR-4638-5p, through regulating Kidins220 and the downstream activity of VEGF and PI3K/AKT pathway, influences prostate cancer progression via angiogenesis. The identification of miR-4638-5p down-regulation in CRPC and the understanding of the functional role of miR-4638-5p and its downstream genes/pathways have the potential to develop biomarkers for CRPC onset and to identify novel targets for novel forms of treatments of this lethal form of PCa. Impact Journals LLC 2016-06-18 /pmc/articles/PMC5216953/ /pubmed/27329728 http://dx.doi.org/10.18632/oncotarget.10165 Text en Copyright: © 2016 Wang et al. http://creativecommons.org/licenses/by/2.5/ 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 Research Paper
Wang, Yang
Shao, Ning
Mao, Xueying
Zhu, Minmin
Fan, Weifei
Shen, Zhixiang
Xiao, Rong
Wang, Chuncai
Bao, Wenping
Xu, Xinyu
Yang, Chun
Dong, Jian
Yu, Deshui
Wu, Yan
Zhu, Caixia
Wen, Liting
Lu, Xiaojie
Lu, Yong-Jie
Feng, Ninghan
MiR-4638-5p inhibits castration resistance of prostate cancer through repressing Kidins220 expression and PI3K/AKT pathway activity
title MiR-4638-5p inhibits castration resistance of prostate cancer through repressing Kidins220 expression and PI3K/AKT pathway activity
title_full MiR-4638-5p inhibits castration resistance of prostate cancer through repressing Kidins220 expression and PI3K/AKT pathway activity
title_fullStr MiR-4638-5p inhibits castration resistance of prostate cancer through repressing Kidins220 expression and PI3K/AKT pathway activity
title_full_unstemmed MiR-4638-5p inhibits castration resistance of prostate cancer through repressing Kidins220 expression and PI3K/AKT pathway activity
title_short MiR-4638-5p inhibits castration resistance of prostate cancer through repressing Kidins220 expression and PI3K/AKT pathway activity
title_sort mir-4638-5p inhibits castration resistance of prostate cancer through repressing kidins220 expression and pi3k/akt pathway activity
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5216953/
https://www.ncbi.nlm.nih.gov/pubmed/27329728
http://dx.doi.org/10.18632/oncotarget.10165
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