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MiR-652 inhibits acidic microenvironment-induced epithelial-mesenchymal transition of pancreatic cancer cells by targeting ZEB1

Recent evidences suggest that the acidic microenvironment might facilitate epithelial mesenchymal transition (EMT) of tumor cells, while the effects of acidity on EMT of pancreatic cancer (PC) remain undefined. The present study demonstrated that acidity suppressed miR-652 expression, which further...

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Autores principales: Deng, Shichang, Li, Xiang, Niu, Yi, Zhu, Shuai, Jin, Yan, Deng, Shijiang, Chen, Jingyuan, Liu, Yang, He, Chi, Yin, Tao, Yang, Zhiyong, Tao, Jing, Xiong, Jiongxin, Wu, Heshui, Wang, Chunyou, Zhao, Gang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741853/
https://www.ncbi.nlm.nih.gov/pubmed/26498682
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author Deng, Shichang
Li, Xiang
Niu, Yi
Zhu, Shuai
Jin, Yan
Deng, Shijiang
Chen, Jingyuan
Liu, Yang
He, Chi
Yin, Tao
Yang, Zhiyong
Tao, Jing
Xiong, Jiongxin
Wu, Heshui
Wang, Chunyou
Zhao, Gang
author_facet Deng, Shichang
Li, Xiang
Niu, Yi
Zhu, Shuai
Jin, Yan
Deng, Shijiang
Chen, Jingyuan
Liu, Yang
He, Chi
Yin, Tao
Yang, Zhiyong
Tao, Jing
Xiong, Jiongxin
Wu, Heshui
Wang, Chunyou
Zhao, Gang
author_sort Deng, Shichang
collection PubMed
description Recent evidences suggest that the acidic microenvironment might facilitate epithelial mesenchymal transition (EMT) of tumor cells, while the effects of acidity on EMT of pancreatic cancer (PC) remain undefined. The present study demonstrated that acidity suppressed miR-652 expression, which further promoted EMT process by absenting inhibition on the transcriptional factor ZEB1 expression. At first, we found that acidity remarkably enhanced invasion ability of PC cells accompanying with increased mesenchymal and decreased epithelial markers. Meanwhile, miRNAs-microarray showed that miR-652, the potential regulator of ZEB1, was distinctly decreased in acidity-treated PC cells. Furthermore, restoration of miR-652 reversed acidity-induced EMT by inhibiting ZEB1 expression, while miR-652 inhibitor induced EMT in normal PC cells through promoting ZEB1 expression. Nevertheless, knockdown of ZEB1 significantly suppressed acidity-induced EMT in PC cells, but ZEB1 overexpression rescued the EMT which was inhibited by miR-652 overexpression. The in vivo results showed that the tumor growth and liver metastasis were remarkably retarded by both miR-652 overexpression and ZEB1 knockdown. The clinical samples further revealed that miR-652 was decreased in PC tissues and antagonistically correlated with ZEB1 expression, associating with late tumor stage, lymphatic invasion and metastasis. In conclusion, our study indicated a novel acidity/miR-652/ZEB1/EMT axis in the tumorigenesis of PC.
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spelling pubmed-47418532016-03-23 MiR-652 inhibits acidic microenvironment-induced epithelial-mesenchymal transition of pancreatic cancer cells by targeting ZEB1 Deng, Shichang Li, Xiang Niu, Yi Zhu, Shuai Jin, Yan Deng, Shijiang Chen, Jingyuan Liu, Yang He, Chi Yin, Tao Yang, Zhiyong Tao, Jing Xiong, Jiongxin Wu, Heshui Wang, Chunyou Zhao, Gang Oncotarget Research Paper Recent evidences suggest that the acidic microenvironment might facilitate epithelial mesenchymal transition (EMT) of tumor cells, while the effects of acidity on EMT of pancreatic cancer (PC) remain undefined. The present study demonstrated that acidity suppressed miR-652 expression, which further promoted EMT process by absenting inhibition on the transcriptional factor ZEB1 expression. At first, we found that acidity remarkably enhanced invasion ability of PC cells accompanying with increased mesenchymal and decreased epithelial markers. Meanwhile, miRNAs-microarray showed that miR-652, the potential regulator of ZEB1, was distinctly decreased in acidity-treated PC cells. Furthermore, restoration of miR-652 reversed acidity-induced EMT by inhibiting ZEB1 expression, while miR-652 inhibitor induced EMT in normal PC cells through promoting ZEB1 expression. Nevertheless, knockdown of ZEB1 significantly suppressed acidity-induced EMT in PC cells, but ZEB1 overexpression rescued the EMT which was inhibited by miR-652 overexpression. The in vivo results showed that the tumor growth and liver metastasis were remarkably retarded by both miR-652 overexpression and ZEB1 knockdown. The clinical samples further revealed that miR-652 was decreased in PC tissues and antagonistically correlated with ZEB1 expression, associating with late tumor stage, lymphatic invasion and metastasis. In conclusion, our study indicated a novel acidity/miR-652/ZEB1/EMT axis in the tumorigenesis of PC. Impact Journals LLC 2015-10-19 /pmc/articles/PMC4741853/ /pubmed/26498682 Text en Copyright: © 2015 Deng 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
Deng, Shichang
Li, Xiang
Niu, Yi
Zhu, Shuai
Jin, Yan
Deng, Shijiang
Chen, Jingyuan
Liu, Yang
He, Chi
Yin, Tao
Yang, Zhiyong
Tao, Jing
Xiong, Jiongxin
Wu, Heshui
Wang, Chunyou
Zhao, Gang
MiR-652 inhibits acidic microenvironment-induced epithelial-mesenchymal transition of pancreatic cancer cells by targeting ZEB1
title MiR-652 inhibits acidic microenvironment-induced epithelial-mesenchymal transition of pancreatic cancer cells by targeting ZEB1
title_full MiR-652 inhibits acidic microenvironment-induced epithelial-mesenchymal transition of pancreatic cancer cells by targeting ZEB1
title_fullStr MiR-652 inhibits acidic microenvironment-induced epithelial-mesenchymal transition of pancreatic cancer cells by targeting ZEB1
title_full_unstemmed MiR-652 inhibits acidic microenvironment-induced epithelial-mesenchymal transition of pancreatic cancer cells by targeting ZEB1
title_short MiR-652 inhibits acidic microenvironment-induced epithelial-mesenchymal transition of pancreatic cancer cells by targeting ZEB1
title_sort mir-652 inhibits acidic microenvironment-induced epithelial-mesenchymal transition of pancreatic cancer cells by targeting zeb1
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741853/
https://www.ncbi.nlm.nih.gov/pubmed/26498682
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