circKDM4C enhances bladder cancer invasion and metastasis through miR-200bc-3p/ZEB1 axis

Abstract Circular RNAs (circRNAs) play essential roles in human bladder cancer (BCa) development, however, unusual expression patterns and functional dysfunction of circRNAs in BCa have not been evaluated. In this study, we validated that circKDM4C (hsa_circ_0001839), derived from the KDM4C gene, is...

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Autores principales: Xueyou Ma, Yufan Ying, Jiazhu Sun, Haiyun Xie, Jiangfeng Li, Liujia He, Weiyu Wang, Shiming Chen, Haixiang Shen, Jiahe Yi, Jindan Luo, Xiao Wang, Xiangyi Zheng, Ben Liu, Liping Xie
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Publicado: Nature Publishing Group 2021
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Acceso en línea:https://doaj.org/article/1810758580114f129f2ac53bda4d4f1c
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spelling oai:doaj.org-article:1810758580114f129f2ac53bda4d4f1c2021-11-28T12:10:40ZcircKDM4C enhances bladder cancer invasion and metastasis through miR-200bc-3p/ZEB1 axis10.1038/s41420-021-00712-92058-7716https://doaj.org/article/1810758580114f129f2ac53bda4d4f1c2021-11-01T00:00:00Zhttps://doi.org/10.1038/s41420-021-00712-9https://doaj.org/toc/2058-7716Abstract Circular RNAs (circRNAs) play essential roles in human bladder cancer (BCa) development, however, unusual expression patterns and functional dysfunction of circRNAs in BCa have not been evaluated. In this study, we validated that circKDM4C (hsa_circ_0001839), derived from the KDM4C gene, is elevated in BCa cell lines as well as tissues. Functionally, overexpression of circKDM4C significantly enhances, and silencing of circKDM4C suppresses migration and invasion capabilities of BCa cells. Mechanistically, circKDM4C can directly interact with miR-200b-3p and miR-200c-3p as a miRNA sponge, which enhances the expression of ZEB1 and promotes mesenchymal phenotype. Conclusively, our findings indicate that circKDM4C may act as a pro-oncogenic factor in BCa invasion and metastasis via the circKDM4C/miR-200bc-3p/ZEB1 axis, which is a potential biomarker or therapeutic target for bladder cancer.Xueyou MaYufan YingJiazhu SunHaiyun XieJiangfeng LiLiujia HeWeiyu WangShiming ChenHaixiang ShenJiahe YiJindan LuoXiao WangXiangyi ZhengBen LiuLiping XieNature Publishing GrouparticleNeoplasms. Tumors. Oncology. Including cancer and carcinogensRC254-282CytologyQH573-671ENCell Death Discovery, Vol 7, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Neoplasms. Tumors. Oncology. Including cancer and carcinogens
RC254-282
Cytology
QH573-671
spellingShingle Neoplasms. Tumors. Oncology. Including cancer and carcinogens
RC254-282
Cytology
QH573-671
Xueyou Ma
Yufan Ying
Jiazhu Sun
Haiyun Xie
Jiangfeng Li
Liujia He
Weiyu Wang
Shiming Chen
Haixiang Shen
Jiahe Yi
Jindan Luo
Xiao Wang
Xiangyi Zheng
Ben Liu
Liping Xie
circKDM4C enhances bladder cancer invasion and metastasis through miR-200bc-3p/ZEB1 axis
description Abstract Circular RNAs (circRNAs) play essential roles in human bladder cancer (BCa) development, however, unusual expression patterns and functional dysfunction of circRNAs in BCa have not been evaluated. In this study, we validated that circKDM4C (hsa_circ_0001839), derived from the KDM4C gene, is elevated in BCa cell lines as well as tissues. Functionally, overexpression of circKDM4C significantly enhances, and silencing of circKDM4C suppresses migration and invasion capabilities of BCa cells. Mechanistically, circKDM4C can directly interact with miR-200b-3p and miR-200c-3p as a miRNA sponge, which enhances the expression of ZEB1 and promotes mesenchymal phenotype. Conclusively, our findings indicate that circKDM4C may act as a pro-oncogenic factor in BCa invasion and metastasis via the circKDM4C/miR-200bc-3p/ZEB1 axis, which is a potential biomarker or therapeutic target for bladder cancer.
format article
author Xueyou Ma
Yufan Ying
Jiazhu Sun
Haiyun Xie
Jiangfeng Li
Liujia He
Weiyu Wang
Shiming Chen
Haixiang Shen
Jiahe Yi
Jindan Luo
Xiao Wang
Xiangyi Zheng
Ben Liu
Liping Xie
author_facet Xueyou Ma
Yufan Ying
Jiazhu Sun
Haiyun Xie
Jiangfeng Li
Liujia He
Weiyu Wang
Shiming Chen
Haixiang Shen
Jiahe Yi
Jindan Luo
Xiao Wang
Xiangyi Zheng
Ben Liu
Liping Xie
author_sort Xueyou Ma
title circKDM4C enhances bladder cancer invasion and metastasis through miR-200bc-3p/ZEB1 axis
title_short circKDM4C enhances bladder cancer invasion and metastasis through miR-200bc-3p/ZEB1 axis
title_full circKDM4C enhances bladder cancer invasion and metastasis through miR-200bc-3p/ZEB1 axis
title_fullStr circKDM4C enhances bladder cancer invasion and metastasis through miR-200bc-3p/ZEB1 axis
title_full_unstemmed circKDM4C enhances bladder cancer invasion and metastasis through miR-200bc-3p/ZEB1 axis
title_sort circkdm4c enhances bladder cancer invasion and metastasis through mir-200bc-3p/zeb1 axis
publisher Nature Publishing Group
publishDate 2021
url https://doaj.org/article/1810758580114f129f2ac53bda4d4f1c
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