Cargando…

XIAP 3′-untranslated region as a ceRNA promotes FSCN1 function in inducing the progression of breast cancer by binding endogenous miR-29a-5p

The non-coding 3′-untranslated region (UTR) of genes play an important role in the regulation of microRNA (miRNA) functions, since it can bind and inactivate multiple miRNAs. Herein, we report that ectopic expression of XIAP 3′UTR increased human breast cancer cells proliferation, colony formation,...

Descripción completa

Detalles Bibliográficos
Autores principales: Wu, Qiang, Yan, Hong, Tao, Si-Qi, Wang, Xiao-Nan, Mou, Lang, Chen, Ping, Cheng, Xing-Wang, Wu, Wen-Yong, Wu, Zheng-Sheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5370001/
https://www.ncbi.nlm.nih.gov/pubmed/28186968
http://dx.doi.org/10.18632/oncotarget.15159
_version_ 1782518165924741120
author Wu, Qiang
Yan, Hong
Tao, Si-Qi
Wang, Xiao-Nan
Mou, Lang
Chen, Ping
Cheng, Xing-Wang
Wu, Wen-Yong
Wu, Zheng-Sheng
author_facet Wu, Qiang
Yan, Hong
Tao, Si-Qi
Wang, Xiao-Nan
Mou, Lang
Chen, Ping
Cheng, Xing-Wang
Wu, Wen-Yong
Wu, Zheng-Sheng
author_sort Wu, Qiang
collection PubMed
description The non-coding 3′-untranslated region (UTR) of genes play an important role in the regulation of microRNA (miRNA) functions, since it can bind and inactivate multiple miRNAs. Herein, we report that ectopic expression of XIAP 3′UTR increased human breast cancer cells proliferation, colony formation, migration, invasion and xenograft tumor growth and suppressed tumor cell death. To investigate this process, we further correlated the genome-wide transcriptional profiling with the gene expression alterations after transfecting XIAP 3′UTR in MCF-7 cells. We identified a robust, genome-wide mechanism of cell migration, motility and epithelial to mesenchymal transition by which mediated by a previously described cellular component movement factor FSCN1. Expression of XIAP and FSCN1 were up-regulated synergistically after transfecting XIAP 3′UTR in vitro and in vivo. Interactions between XIAP and FSCN1 appear to be a key determinant of these processes. Co-transfection with Dicer siRNA reversed the XIAP 3′UTR-mediated oncogenicity, suggesting the miRNAs might be involved in that process. Furthermore, we demonstrated that one miRNA, miR-29a-5p, can bind to both the XIAP and FSCN1 3′UTRs and play an important role in that interactions. We showed that the 3′UTR of XIAP was able to antagonize miR-29a-5p, and resulted in the increased translation of XIAP and FSCN1. Thus, our findings reveal important new insights into how XIAP 3′UTR works, suggesting that the non-coding XIAP 3′UTR serves as a competitor for miRNA binding and subsequently inactivates miRNA functions, by which XIAP 3′UTR frees the target mRNAs from being repressed.
format Online
Article
Text
id pubmed-5370001
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-53700012017-04-17 XIAP 3′-untranslated region as a ceRNA promotes FSCN1 function in inducing the progression of breast cancer by binding endogenous miR-29a-5p Wu, Qiang Yan, Hong Tao, Si-Qi Wang, Xiao-Nan Mou, Lang Chen, Ping Cheng, Xing-Wang Wu, Wen-Yong Wu, Zheng-Sheng Oncotarget Research Paper The non-coding 3′-untranslated region (UTR) of genes play an important role in the regulation of microRNA (miRNA) functions, since it can bind and inactivate multiple miRNAs. Herein, we report that ectopic expression of XIAP 3′UTR increased human breast cancer cells proliferation, colony formation, migration, invasion and xenograft tumor growth and suppressed tumor cell death. To investigate this process, we further correlated the genome-wide transcriptional profiling with the gene expression alterations after transfecting XIAP 3′UTR in MCF-7 cells. We identified a robust, genome-wide mechanism of cell migration, motility and epithelial to mesenchymal transition by which mediated by a previously described cellular component movement factor FSCN1. Expression of XIAP and FSCN1 were up-regulated synergistically after transfecting XIAP 3′UTR in vitro and in vivo. Interactions between XIAP and FSCN1 appear to be a key determinant of these processes. Co-transfection with Dicer siRNA reversed the XIAP 3′UTR-mediated oncogenicity, suggesting the miRNAs might be involved in that process. Furthermore, we demonstrated that one miRNA, miR-29a-5p, can bind to both the XIAP and FSCN1 3′UTRs and play an important role in that interactions. We showed that the 3′UTR of XIAP was able to antagonize miR-29a-5p, and resulted in the increased translation of XIAP and FSCN1. Thus, our findings reveal important new insights into how XIAP 3′UTR works, suggesting that the non-coding XIAP 3′UTR serves as a competitor for miRNA binding and subsequently inactivates miRNA functions, by which XIAP 3′UTR frees the target mRNAs from being repressed. Impact Journals LLC 2017-02-07 /pmc/articles/PMC5370001/ /pubmed/28186968 http://dx.doi.org/10.18632/oncotarget.15159 Text en Copyright: © 2017 Wu 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 Research Paper
Wu, Qiang
Yan, Hong
Tao, Si-Qi
Wang, Xiao-Nan
Mou, Lang
Chen, Ping
Cheng, Xing-Wang
Wu, Wen-Yong
Wu, Zheng-Sheng
XIAP 3′-untranslated region as a ceRNA promotes FSCN1 function in inducing the progression of breast cancer by binding endogenous miR-29a-5p
title XIAP 3′-untranslated region as a ceRNA promotes FSCN1 function in inducing the progression of breast cancer by binding endogenous miR-29a-5p
title_full XIAP 3′-untranslated region as a ceRNA promotes FSCN1 function in inducing the progression of breast cancer by binding endogenous miR-29a-5p
title_fullStr XIAP 3′-untranslated region as a ceRNA promotes FSCN1 function in inducing the progression of breast cancer by binding endogenous miR-29a-5p
title_full_unstemmed XIAP 3′-untranslated region as a ceRNA promotes FSCN1 function in inducing the progression of breast cancer by binding endogenous miR-29a-5p
title_short XIAP 3′-untranslated region as a ceRNA promotes FSCN1 function in inducing the progression of breast cancer by binding endogenous miR-29a-5p
title_sort xiap 3′-untranslated region as a cerna promotes fscn1 function in inducing the progression of breast cancer by binding endogenous mir-29a-5p
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5370001/
https://www.ncbi.nlm.nih.gov/pubmed/28186968
http://dx.doi.org/10.18632/oncotarget.15159
work_keys_str_mv AT wuqiang xiap3untranslatedregionasacernapromotesfscn1functionininducingtheprogressionofbreastcancerbybindingendogenousmir29a5p
AT yanhong xiap3untranslatedregionasacernapromotesfscn1functionininducingtheprogressionofbreastcancerbybindingendogenousmir29a5p
AT taosiqi xiap3untranslatedregionasacernapromotesfscn1functionininducingtheprogressionofbreastcancerbybindingendogenousmir29a5p
AT wangxiaonan xiap3untranslatedregionasacernapromotesfscn1functionininducingtheprogressionofbreastcancerbybindingendogenousmir29a5p
AT moulang xiap3untranslatedregionasacernapromotesfscn1functionininducingtheprogressionofbreastcancerbybindingendogenousmir29a5p
AT chenping xiap3untranslatedregionasacernapromotesfscn1functionininducingtheprogressionofbreastcancerbybindingendogenousmir29a5p
AT chengxingwang xiap3untranslatedregionasacernapromotesfscn1functionininducingtheprogressionofbreastcancerbybindingendogenousmir29a5p
AT wuwenyong xiap3untranslatedregionasacernapromotesfscn1functionininducingtheprogressionofbreastcancerbybindingendogenousmir29a5p
AT wuzhengsheng xiap3untranslatedregionasacernapromotesfscn1functionininducingtheprogressionofbreastcancerbybindingendogenousmir29a5p