Cargando…

The novel hsa-miR-12528 regulates tumourigenesis and metastasis through hypo-phosphorylation of AKT cascade by targeting IGF-1R in human lung cancer

Lung cancer cases are increasing yearly; however, few novel therapeutic strategies for treating this disease have been developed. Here the dysregulation between microRNAs and oncogenes or tumour-suppressor genes forms a close connection-loop to the development or progression in human lung carcinogen...

Descripción completa

Detalles Bibliográficos
Autores principales: Jeon, Seong Ho, Yoo, Jung Ki, Kim, Chang Min, Lim, Eun Su, Lee, So Jeong, Lee, Ji Min, Oh, Seung-Hun, Kim, Jin Kyeoung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5928042/
https://www.ncbi.nlm.nih.gov/pubmed/29712908
http://dx.doi.org/10.1038/s41419-018-0535-8
_version_ 1783319158462611456
author Jeon, Seong Ho
Yoo, Jung Ki
Kim, Chang Min
Lim, Eun Su
Lee, So Jeong
Lee, Ji Min
Oh, Seung-Hun
Kim, Jin Kyeoung
author_facet Jeon, Seong Ho
Yoo, Jung Ki
Kim, Chang Min
Lim, Eun Su
Lee, So Jeong
Lee, Ji Min
Oh, Seung-Hun
Kim, Jin Kyeoung
author_sort Jeon, Seong Ho
collection PubMed
description Lung cancer cases are increasing yearly; however, few novel therapeutic strategies for treating this disease have been developed. Here the dysregulation between microRNAs and oncogenes or tumour-suppressor genes forms a close connection-loop to the development or progression in human lung carcinogenesis. That is, the relationship between microRNAs and carcinogenic mechanism may find the critical clue to improve the treatment efficacy. Accordingly, we identified and characterised a novel microRNA, hsa-miR-12528, in A549 cells. The miR-12528 expression was aberrantly downregulated in cancer cell lines and in the patient tissues derived from human non-small cell lung cancer. In addition, we found that miR-12528 post-transcriptionally controls the translation of the insulin-like growth factor 1 receptor (IGF-1R) gene by directly targeting the 3′-untranslated region of IGF-1R mRNA. Notably, the IGF-1R gene is elevated in the majority of cancers and may be an attractive therapeutic target for anticancer therapy because elevated IGF-1R mediates the signalling amplification of a major oncogenic pathway in neoplasia. In A549 cells, miR-12528 overexpression epigenetically altered the downstream phosphorylation of the primary IGF-1R networks, negatively regulated proliferation, apoptosis and migratory activity, and consequently inhibited tumourigenesis and metastasis in vivo. Therefore, our discovery of hsa-miR-12528 may be able to be applied to the development of molecular-target therapeutic strategies and diagnosis-specific biomarkers for human lung cancer.
format Online
Article
Text
id pubmed-5928042
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-59280422018-06-11 The novel hsa-miR-12528 regulates tumourigenesis and metastasis through hypo-phosphorylation of AKT cascade by targeting IGF-1R in human lung cancer Jeon, Seong Ho Yoo, Jung Ki Kim, Chang Min Lim, Eun Su Lee, So Jeong Lee, Ji Min Oh, Seung-Hun Kim, Jin Kyeoung Cell Death Dis Article Lung cancer cases are increasing yearly; however, few novel therapeutic strategies for treating this disease have been developed. Here the dysregulation between microRNAs and oncogenes or tumour-suppressor genes forms a close connection-loop to the development or progression in human lung carcinogenesis. That is, the relationship between microRNAs and carcinogenic mechanism may find the critical clue to improve the treatment efficacy. Accordingly, we identified and characterised a novel microRNA, hsa-miR-12528, in A549 cells. The miR-12528 expression was aberrantly downregulated in cancer cell lines and in the patient tissues derived from human non-small cell lung cancer. In addition, we found that miR-12528 post-transcriptionally controls the translation of the insulin-like growth factor 1 receptor (IGF-1R) gene by directly targeting the 3′-untranslated region of IGF-1R mRNA. Notably, the IGF-1R gene is elevated in the majority of cancers and may be an attractive therapeutic target for anticancer therapy because elevated IGF-1R mediates the signalling amplification of a major oncogenic pathway in neoplasia. In A549 cells, miR-12528 overexpression epigenetically altered the downstream phosphorylation of the primary IGF-1R networks, negatively regulated proliferation, apoptosis and migratory activity, and consequently inhibited tumourigenesis and metastasis in vivo. Therefore, our discovery of hsa-miR-12528 may be able to be applied to the development of molecular-target therapeutic strategies and diagnosis-specific biomarkers for human lung cancer. Nature Publishing Group UK 2018-05-01 /pmc/articles/PMC5928042/ /pubmed/29712908 http://dx.doi.org/10.1038/s41419-018-0535-8 Text en © The Author(s) 2018 Open Access This 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 license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license 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 license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Jeon, Seong Ho
Yoo, Jung Ki
Kim, Chang Min
Lim, Eun Su
Lee, So Jeong
Lee, Ji Min
Oh, Seung-Hun
Kim, Jin Kyeoung
The novel hsa-miR-12528 regulates tumourigenesis and metastasis through hypo-phosphorylation of AKT cascade by targeting IGF-1R in human lung cancer
title The novel hsa-miR-12528 regulates tumourigenesis and metastasis through hypo-phosphorylation of AKT cascade by targeting IGF-1R in human lung cancer
title_full The novel hsa-miR-12528 regulates tumourigenesis and metastasis through hypo-phosphorylation of AKT cascade by targeting IGF-1R in human lung cancer
title_fullStr The novel hsa-miR-12528 regulates tumourigenesis and metastasis through hypo-phosphorylation of AKT cascade by targeting IGF-1R in human lung cancer
title_full_unstemmed The novel hsa-miR-12528 regulates tumourigenesis and metastasis through hypo-phosphorylation of AKT cascade by targeting IGF-1R in human lung cancer
title_short The novel hsa-miR-12528 regulates tumourigenesis and metastasis through hypo-phosphorylation of AKT cascade by targeting IGF-1R in human lung cancer
title_sort novel hsa-mir-12528 regulates tumourigenesis and metastasis through hypo-phosphorylation of akt cascade by targeting igf-1r in human lung cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5928042/
https://www.ncbi.nlm.nih.gov/pubmed/29712908
http://dx.doi.org/10.1038/s41419-018-0535-8
work_keys_str_mv AT jeonseongho thenovelhsamir12528regulatestumourigenesisandmetastasisthroughhypophosphorylationofaktcascadebytargetingigf1rinhumanlungcancer
AT yoojungki thenovelhsamir12528regulatestumourigenesisandmetastasisthroughhypophosphorylationofaktcascadebytargetingigf1rinhumanlungcancer
AT kimchangmin thenovelhsamir12528regulatestumourigenesisandmetastasisthroughhypophosphorylationofaktcascadebytargetingigf1rinhumanlungcancer
AT limeunsu thenovelhsamir12528regulatestumourigenesisandmetastasisthroughhypophosphorylationofaktcascadebytargetingigf1rinhumanlungcancer
AT leesojeong thenovelhsamir12528regulatestumourigenesisandmetastasisthroughhypophosphorylationofaktcascadebytargetingigf1rinhumanlungcancer
AT leejimin thenovelhsamir12528regulatestumourigenesisandmetastasisthroughhypophosphorylationofaktcascadebytargetingigf1rinhumanlungcancer
AT ohseunghun thenovelhsamir12528regulatestumourigenesisandmetastasisthroughhypophosphorylationofaktcascadebytargetingigf1rinhumanlungcancer
AT kimjinkyeoung thenovelhsamir12528regulatestumourigenesisandmetastasisthroughhypophosphorylationofaktcascadebytargetingigf1rinhumanlungcancer
AT jeonseongho novelhsamir12528regulatestumourigenesisandmetastasisthroughhypophosphorylationofaktcascadebytargetingigf1rinhumanlungcancer
AT yoojungki novelhsamir12528regulatestumourigenesisandmetastasisthroughhypophosphorylationofaktcascadebytargetingigf1rinhumanlungcancer
AT kimchangmin novelhsamir12528regulatestumourigenesisandmetastasisthroughhypophosphorylationofaktcascadebytargetingigf1rinhumanlungcancer
AT limeunsu novelhsamir12528regulatestumourigenesisandmetastasisthroughhypophosphorylationofaktcascadebytargetingigf1rinhumanlungcancer
AT leesojeong novelhsamir12528regulatestumourigenesisandmetastasisthroughhypophosphorylationofaktcascadebytargetingigf1rinhumanlungcancer
AT leejimin novelhsamir12528regulatestumourigenesisandmetastasisthroughhypophosphorylationofaktcascadebytargetingigf1rinhumanlungcancer
AT ohseunghun novelhsamir12528regulatestumourigenesisandmetastasisthroughhypophosphorylationofaktcascadebytargetingigf1rinhumanlungcancer
AT kimjinkyeoung novelhsamir12528regulatestumourigenesisandmetastasisthroughhypophosphorylationofaktcascadebytargetingigf1rinhumanlungcancer