Cargando…

The circular RNA circ-ERBIN promotes growth and metastasis of colorectal cancer by miR-125a-5p and miR-138-5p/4EBP-1 mediated cap-independent HIF-1α translation

BACKGROUND: Circular RNA (circRNAs) and hypoxia have been found to play the key roles in the pathogenesis and progression of cancer including colorectal cancer (CRC). However, the expressions and functions of the specific circRNAs in regulating hypoxia-involved CRC metastasis, and the circRNAs that...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Liang-Yan, Wang, Lian, Ren, Yue-Xiang, Pang, Zheng, Liu, Yao, Sun, Xiao-Dong, Tu, Jian, Zhi, Zheng, Qin, Yan, Sun, Li-Na, Li, Jian-Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7682012/
https://www.ncbi.nlm.nih.gov/pubmed/33225938
http://dx.doi.org/10.1186/s12943-020-01272-9
_version_ 1783612626915295232
author Chen, Liang-Yan
Wang, Lian
Ren, Yue-Xiang
Pang, Zheng
Liu, Yao
Sun, Xiao-Dong
Tu, Jian
Zhi, Zheng
Qin, Yan
Sun, Li-Na
Li, Jian-Ming
author_facet Chen, Liang-Yan
Wang, Lian
Ren, Yue-Xiang
Pang, Zheng
Liu, Yao
Sun, Xiao-Dong
Tu, Jian
Zhi, Zheng
Qin, Yan
Sun, Li-Na
Li, Jian-Ming
author_sort Chen, Liang-Yan
collection PubMed
description BACKGROUND: Circular RNA (circRNAs) and hypoxia have been found to play the key roles in the pathogenesis and progression of cancer including colorectal cancer (CRC). However, the expressions and functions of the specific circRNAs in regulating hypoxia-involved CRC metastasis, and the circRNAs that are relevant to regulate HIF-1α levels in CRC remain elusive. METHODS: qRT-PCR was used to detect the expression of circRNAs and mRNA in CRC cells and tissues. Fluorescence in situ hybridization (FISH) was used to analyze the location of circ-ERBIN. Function-based experiments were performed using circ-ERBIN overexpression and knockdown cell lines in vitro and in vivo, including CCK8, colony formation, EdU assay, transwell, tumor growth and metastasis models. Mechanistically, luciferase reporter assay, western blots and immunohistochemical stainings were performed. RESULTS: Circ-Erbin was highly expressed in the CRC cells and Circ-Erbin overexpression facilitated the proliferation, migration and metastasis of CRC in vitro and in vivo. Notably, circ-Erbin overexpression significantly promoted angiogenesis by increasing the expression of hypoxia induced factor (HIF-1α) in CRC. Mechanistically, circ-Erbin accelerated a cap-independent protein translation of HIF-1α in CRC cells as the sponges of miR-125a-5p and miR-138-5p, which synergistically targeted eukaryotic translation initiation factor 4E binding protein 1(4EBP-1). CONCLUSIONS: Our findings uncover a key mechanism for circ-Erbin mediated HIF-1α activation by miR-125a-5p-5p/miR-138-5p/4EBP-1 axis and circ-ERBIN is a potential target for CRC treatment. SUPPLEMENTARY INFORMATION: Supplementary information accompanies this paper at 10.1186/s12943-020-01272-9.
format Online
Article
Text
id pubmed-7682012
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-76820122020-11-23 The circular RNA circ-ERBIN promotes growth and metastasis of colorectal cancer by miR-125a-5p and miR-138-5p/4EBP-1 mediated cap-independent HIF-1α translation Chen, Liang-Yan Wang, Lian Ren, Yue-Xiang Pang, Zheng Liu, Yao Sun, Xiao-Dong Tu, Jian Zhi, Zheng Qin, Yan Sun, Li-Na Li, Jian-Ming Mol Cancer Research BACKGROUND: Circular RNA (circRNAs) and hypoxia have been found to play the key roles in the pathogenesis and progression of cancer including colorectal cancer (CRC). However, the expressions and functions of the specific circRNAs in regulating hypoxia-involved CRC metastasis, and the circRNAs that are relevant to regulate HIF-1α levels in CRC remain elusive. METHODS: qRT-PCR was used to detect the expression of circRNAs and mRNA in CRC cells and tissues. Fluorescence in situ hybridization (FISH) was used to analyze the location of circ-ERBIN. Function-based experiments were performed using circ-ERBIN overexpression and knockdown cell lines in vitro and in vivo, including CCK8, colony formation, EdU assay, transwell, tumor growth and metastasis models. Mechanistically, luciferase reporter assay, western blots and immunohistochemical stainings were performed. RESULTS: Circ-Erbin was highly expressed in the CRC cells and Circ-Erbin overexpression facilitated the proliferation, migration and metastasis of CRC in vitro and in vivo. Notably, circ-Erbin overexpression significantly promoted angiogenesis by increasing the expression of hypoxia induced factor (HIF-1α) in CRC. Mechanistically, circ-Erbin accelerated a cap-independent protein translation of HIF-1α in CRC cells as the sponges of miR-125a-5p and miR-138-5p, which synergistically targeted eukaryotic translation initiation factor 4E binding protein 1(4EBP-1). CONCLUSIONS: Our findings uncover a key mechanism for circ-Erbin mediated HIF-1α activation by miR-125a-5p-5p/miR-138-5p/4EBP-1 axis and circ-ERBIN is a potential target for CRC treatment. SUPPLEMENTARY INFORMATION: Supplementary information accompanies this paper at 10.1186/s12943-020-01272-9. BioMed Central 2020-11-23 /pmc/articles/PMC7682012/ /pubmed/33225938 http://dx.doi.org/10.1186/s12943-020-01272-9 Text en © The Author(s) 2020 Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated in a credit line to the data.
spellingShingle Research
Chen, Liang-Yan
Wang, Lian
Ren, Yue-Xiang
Pang, Zheng
Liu, Yao
Sun, Xiao-Dong
Tu, Jian
Zhi, Zheng
Qin, Yan
Sun, Li-Na
Li, Jian-Ming
The circular RNA circ-ERBIN promotes growth and metastasis of colorectal cancer by miR-125a-5p and miR-138-5p/4EBP-1 mediated cap-independent HIF-1α translation
title The circular RNA circ-ERBIN promotes growth and metastasis of colorectal cancer by miR-125a-5p and miR-138-5p/4EBP-1 mediated cap-independent HIF-1α translation
title_full The circular RNA circ-ERBIN promotes growth and metastasis of colorectal cancer by miR-125a-5p and miR-138-5p/4EBP-1 mediated cap-independent HIF-1α translation
title_fullStr The circular RNA circ-ERBIN promotes growth and metastasis of colorectal cancer by miR-125a-5p and miR-138-5p/4EBP-1 mediated cap-independent HIF-1α translation
title_full_unstemmed The circular RNA circ-ERBIN promotes growth and metastasis of colorectal cancer by miR-125a-5p and miR-138-5p/4EBP-1 mediated cap-independent HIF-1α translation
title_short The circular RNA circ-ERBIN promotes growth and metastasis of colorectal cancer by miR-125a-5p and miR-138-5p/4EBP-1 mediated cap-independent HIF-1α translation
title_sort circular rna circ-erbin promotes growth and metastasis of colorectal cancer by mir-125a-5p and mir-138-5p/4ebp-1 mediated cap-independent hif-1α translation
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7682012/
https://www.ncbi.nlm.nih.gov/pubmed/33225938
http://dx.doi.org/10.1186/s12943-020-01272-9
work_keys_str_mv AT chenliangyan thecircularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT wanglian thecircularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT renyuexiang thecircularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT pangzheng thecircularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT liuyao thecircularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT sunxiaodong thecircularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT tujian thecircularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT zhizheng thecircularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT qinyan thecircularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT sunlina thecircularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT lijianming thecircularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT chenliangyan circularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT wanglian circularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT renyuexiang circularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT pangzheng circularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT liuyao circularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT sunxiaodong circularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT tujian circularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT zhizheng circularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT qinyan circularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT sunlina circularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation
AT lijianming circularrnacircerbinpromotesgrowthandmetastasisofcolorectalcancerbymir125a5pandmir1385p4ebp1mediatedcapindependenthif1atranslation