Cargando…

miR-15a-3p and miR-16-1-3p Negatively Regulate Twist1 to Repress Gastric Cancer Cell Invasion and Metastasis

MicroRNAs are a novel class of gene regulators that function as oncogenes or tumor suppressors. In our current study, we investigated the role of miR-15a-3p and miR-16-1-3p in the regulation of Twist1 expression and EMT process. Our bioinformatics analysis suggested that on the 3' UTR of Twist1...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Tao, Hou, Jingjing, Li, Zengpeng, Zheng, Zihan, Wei, Jie, Song, Dan, Hu, Tao, Wu, Qiao, Yang, James Y., Cai, Jian-chun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5264267/
https://www.ncbi.nlm.nih.gov/pubmed/28123352
http://dx.doi.org/10.7150/ijbs.14770
_version_ 1782500070339379200
author Wang, Tao
Hou, Jingjing
Li, Zengpeng
Zheng, Zihan
Wei, Jie
Song, Dan
Hu, Tao
Wu, Qiao
Yang, James Y.
Cai, Jian-chun
author_facet Wang, Tao
Hou, Jingjing
Li, Zengpeng
Zheng, Zihan
Wei, Jie
Song, Dan
Hu, Tao
Wu, Qiao
Yang, James Y.
Cai, Jian-chun
author_sort Wang, Tao
collection PubMed
description MicroRNAs are a novel class of gene regulators that function as oncogenes or tumor suppressors. In our current study, we investigated the role of miR-15a-3p and miR-16-1-3p in the regulation of Twist1 expression and EMT process. Our bioinformatics analysis suggested that on the 3' UTR of Twist1, there are two conserved miRNA recognition sites for miR-15a-3p and miR-16-1-3p respectively. Interestingly, overexpression of miR-15a-3p and miR-16-1-3p significantly suppressed the activity of luciferase reporter containing Twist1-3' UTR, reduced mRNA and protein level of EMT related genes such as TWIST1, N-cadherin, α-SMA and Fibronectin, and repressed MMP9 and MMP2 activity, as well as cell migration and invasion. Conversely, inhibition of miR-15a-3p and miR-16-1-3p significantly increased TWIST1, N-cadherin, α-SMA and Fibronectin protein expression. In addition, Twist1 co-transfection significantly ameliorated the loss of cell migration and invasion. Moreover, overexpression of miR-15a-3p and miR-16-1-3p dramatically suppressed the ability of BGC823 cells to form colonies in vitro and develop tumors in vivo in nude mice. Finally, qPCR and Western blot analysis showed that miR-15a-3p and miR-16-1-3p were significantly reduced in clinical gastric cancer tissue, whereas Twist1 mRNA and protein were significantly up-regulated, suggesting that this aberrant down-regulation of miR-15a-3p and miR-16-1-3p might be associated with the abnormal regulation of Twist1 and the EMT process in gastric cancer development. Our results help to elucidate a novel and important mechanism for the regulation of Twist1 in the development of cancer.
format Online
Article
Text
id pubmed-5264267
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-52642672017-01-25 miR-15a-3p and miR-16-1-3p Negatively Regulate Twist1 to Repress Gastric Cancer Cell Invasion and Metastasis Wang, Tao Hou, Jingjing Li, Zengpeng Zheng, Zihan Wei, Jie Song, Dan Hu, Tao Wu, Qiao Yang, James Y. Cai, Jian-chun Int J Biol Sci Research Paper MicroRNAs are a novel class of gene regulators that function as oncogenes or tumor suppressors. In our current study, we investigated the role of miR-15a-3p and miR-16-1-3p in the regulation of Twist1 expression and EMT process. Our bioinformatics analysis suggested that on the 3' UTR of Twist1, there are two conserved miRNA recognition sites for miR-15a-3p and miR-16-1-3p respectively. Interestingly, overexpression of miR-15a-3p and miR-16-1-3p significantly suppressed the activity of luciferase reporter containing Twist1-3' UTR, reduced mRNA and protein level of EMT related genes such as TWIST1, N-cadherin, α-SMA and Fibronectin, and repressed MMP9 and MMP2 activity, as well as cell migration and invasion. Conversely, inhibition of miR-15a-3p and miR-16-1-3p significantly increased TWIST1, N-cadherin, α-SMA and Fibronectin protein expression. In addition, Twist1 co-transfection significantly ameliorated the loss of cell migration and invasion. Moreover, overexpression of miR-15a-3p and miR-16-1-3p dramatically suppressed the ability of BGC823 cells to form colonies in vitro and develop tumors in vivo in nude mice. Finally, qPCR and Western blot analysis showed that miR-15a-3p and miR-16-1-3p were significantly reduced in clinical gastric cancer tissue, whereas Twist1 mRNA and protein were significantly up-regulated, suggesting that this aberrant down-regulation of miR-15a-3p and miR-16-1-3p might be associated with the abnormal regulation of Twist1 and the EMT process in gastric cancer development. Our results help to elucidate a novel and important mechanism for the regulation of Twist1 in the development of cancer. Ivyspring International Publisher 2017-01-15 /pmc/articles/PMC5264267/ /pubmed/28123352 http://dx.doi.org/10.7150/ijbs.14770 Text en
spellingShingle Research Paper
Wang, Tao
Hou, Jingjing
Li, Zengpeng
Zheng, Zihan
Wei, Jie
Song, Dan
Hu, Tao
Wu, Qiao
Yang, James Y.
Cai, Jian-chun
miR-15a-3p and miR-16-1-3p Negatively Regulate Twist1 to Repress Gastric Cancer Cell Invasion and Metastasis
title miR-15a-3p and miR-16-1-3p Negatively Regulate Twist1 to Repress Gastric Cancer Cell Invasion and Metastasis
title_full miR-15a-3p and miR-16-1-3p Negatively Regulate Twist1 to Repress Gastric Cancer Cell Invasion and Metastasis
title_fullStr miR-15a-3p and miR-16-1-3p Negatively Regulate Twist1 to Repress Gastric Cancer Cell Invasion and Metastasis
title_full_unstemmed miR-15a-3p and miR-16-1-3p Negatively Regulate Twist1 to Repress Gastric Cancer Cell Invasion and Metastasis
title_short miR-15a-3p and miR-16-1-3p Negatively Regulate Twist1 to Repress Gastric Cancer Cell Invasion and Metastasis
title_sort mir-15a-3p and mir-16-1-3p negatively regulate twist1 to repress gastric cancer cell invasion and metastasis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5264267/
https://www.ncbi.nlm.nih.gov/pubmed/28123352
http://dx.doi.org/10.7150/ijbs.14770
work_keys_str_mv AT wangtao mir15a3pandmir1613pnegativelyregulatetwist1torepressgastriccancercellinvasionandmetastasis
AT houjingjing mir15a3pandmir1613pnegativelyregulatetwist1torepressgastriccancercellinvasionandmetastasis
AT lizengpeng mir15a3pandmir1613pnegativelyregulatetwist1torepressgastriccancercellinvasionandmetastasis
AT zhengzihan mir15a3pandmir1613pnegativelyregulatetwist1torepressgastriccancercellinvasionandmetastasis
AT weijie mir15a3pandmir1613pnegativelyregulatetwist1torepressgastriccancercellinvasionandmetastasis
AT songdan mir15a3pandmir1613pnegativelyregulatetwist1torepressgastriccancercellinvasionandmetastasis
AT hutao mir15a3pandmir1613pnegativelyregulatetwist1torepressgastriccancercellinvasionandmetastasis
AT wuqiao mir15a3pandmir1613pnegativelyregulatetwist1torepressgastriccancercellinvasionandmetastasis
AT yangjamesy mir15a3pandmir1613pnegativelyregulatetwist1torepressgastriccancercellinvasionandmetastasis
AT caijianchun mir15a3pandmir1613pnegativelyregulatetwist1torepressgastriccancercellinvasionandmetastasis