Cargando…

Metastasis-associated gene, mag-1 improves tumour microenvironmental adaptation and potentiates tumour metastasis

Metastasis is a major cause of death from malignant diseases, and the underlying mechanisms are still largely not known. A detailed probe into the factors which may regulate tumour invasion and metastasis contributes to novel anti-metastatic therapies. We previously identified a novel metastasis-ass...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Yan, Jia, Haiquan, Lin, Huiyun, Tan, Xiaogang, Du, Zhiyan, Chen, Huihua, Xu, Yuanji, Han, Xiaoxi, Zhang, Jiakai, Zhao, Siyang, Yu, Xiaodan, Lu, Yinglin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4393732/
https://www.ncbi.nlm.nih.gov/pubmed/22985252
http://dx.doi.org/10.1111/j.1582-4934.2012.01633.x
_version_ 1782366206312841216
author Wang, Yan
Jia, Haiquan
Lin, Huiyun
Tan, Xiaogang
Du, Zhiyan
Chen, Huihua
Xu, Yuanji
Han, Xiaoxi
Zhang, Jiakai
Zhao, Siyang
Yu, Xiaodan
Lu, Yinglin
author_facet Wang, Yan
Jia, Haiquan
Lin, Huiyun
Tan, Xiaogang
Du, Zhiyan
Chen, Huihua
Xu, Yuanji
Han, Xiaoxi
Zhang, Jiakai
Zhao, Siyang
Yu, Xiaodan
Lu, Yinglin
author_sort Wang, Yan
collection PubMed
description Metastasis is a major cause of death from malignant diseases, and the underlying mechanisms are still largely not known. A detailed probe into the factors which may regulate tumour invasion and metastasis contributes to novel anti-metastatic therapies. We previously identified a novel metastasis-associated gene 1 (mag-1) by means of metastatic phenotype cloning. Then we characterized the gene expression profile of mag-1 and showed that it promoted cell migration, adhesion and invasion in vitro. Importantly, the disruption of mag-1 via RNA interference not only inhibited cellular metastatic behaviours but also significantly reduced tumour weight and restrained mouse breast cancer cells to metastasize to lungs in spontaneous metastatic assay in vivo. Furthermore, we proved that mag-1 integrates dual regulating mechanisms through the stabilization of HIF-1α and the activation of mTOR signalling pathway. We also found that mag-1-induced metastatic promotion could be abrogated by mTOR specific inhibitor, rapamycin. Taken together, the findings identified a direct role that mag-1 played in metastasis and implicated its function in cellular adaptation to tumour microenvironment.
format Online
Article
Text
id pubmed-4393732
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher BlackWell Publishing Ltd
record_format MEDLINE/PubMed
spelling pubmed-43937322015-04-13 Metastasis-associated gene, mag-1 improves tumour microenvironmental adaptation and potentiates tumour metastasis Wang, Yan Jia, Haiquan Lin, Huiyun Tan, Xiaogang Du, Zhiyan Chen, Huihua Xu, Yuanji Han, Xiaoxi Zhang, Jiakai Zhao, Siyang Yu, Xiaodan Lu, Yinglin J Cell Mol Med Original Articles Metastasis is a major cause of death from malignant diseases, and the underlying mechanisms are still largely not known. A detailed probe into the factors which may regulate tumour invasion and metastasis contributes to novel anti-metastatic therapies. We previously identified a novel metastasis-associated gene 1 (mag-1) by means of metastatic phenotype cloning. Then we characterized the gene expression profile of mag-1 and showed that it promoted cell migration, adhesion and invasion in vitro. Importantly, the disruption of mag-1 via RNA interference not only inhibited cellular metastatic behaviours but also significantly reduced tumour weight and restrained mouse breast cancer cells to metastasize to lungs in spontaneous metastatic assay in vivo. Furthermore, we proved that mag-1 integrates dual regulating mechanisms through the stabilization of HIF-1α and the activation of mTOR signalling pathway. We also found that mag-1-induced metastatic promotion could be abrogated by mTOR specific inhibitor, rapamycin. Taken together, the findings identified a direct role that mag-1 played in metastasis and implicated its function in cellular adaptation to tumour microenvironment. BlackWell Publishing Ltd 2012-12 2012-12-13 /pmc/articles/PMC4393732/ /pubmed/22985252 http://dx.doi.org/10.1111/j.1582-4934.2012.01633.x Text en © 2012 The Authors Journal of Cellular and Molecular Medicine © 2012 Foundation for Cellular and Molecular Medicine/Blackwell Publishing Ltd
spellingShingle Original Articles
Wang, Yan
Jia, Haiquan
Lin, Huiyun
Tan, Xiaogang
Du, Zhiyan
Chen, Huihua
Xu, Yuanji
Han, Xiaoxi
Zhang, Jiakai
Zhao, Siyang
Yu, Xiaodan
Lu, Yinglin
Metastasis-associated gene, mag-1 improves tumour microenvironmental adaptation and potentiates tumour metastasis
title Metastasis-associated gene, mag-1 improves tumour microenvironmental adaptation and potentiates tumour metastasis
title_full Metastasis-associated gene, mag-1 improves tumour microenvironmental adaptation and potentiates tumour metastasis
title_fullStr Metastasis-associated gene, mag-1 improves tumour microenvironmental adaptation and potentiates tumour metastasis
title_full_unstemmed Metastasis-associated gene, mag-1 improves tumour microenvironmental adaptation and potentiates tumour metastasis
title_short Metastasis-associated gene, mag-1 improves tumour microenvironmental adaptation and potentiates tumour metastasis
title_sort metastasis-associated gene, mag-1 improves tumour microenvironmental adaptation and potentiates tumour metastasis
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4393732/
https://www.ncbi.nlm.nih.gov/pubmed/22985252
http://dx.doi.org/10.1111/j.1582-4934.2012.01633.x
work_keys_str_mv AT wangyan metastasisassociatedgenemag1improvestumourmicroenvironmentaladaptationandpotentiatestumourmetastasis
AT jiahaiquan metastasisassociatedgenemag1improvestumourmicroenvironmentaladaptationandpotentiatestumourmetastasis
AT linhuiyun metastasisassociatedgenemag1improvestumourmicroenvironmentaladaptationandpotentiatestumourmetastasis
AT tanxiaogang metastasisassociatedgenemag1improvestumourmicroenvironmentaladaptationandpotentiatestumourmetastasis
AT duzhiyan metastasisassociatedgenemag1improvestumourmicroenvironmentaladaptationandpotentiatestumourmetastasis
AT chenhuihua metastasisassociatedgenemag1improvestumourmicroenvironmentaladaptationandpotentiatestumourmetastasis
AT xuyuanji metastasisassociatedgenemag1improvestumourmicroenvironmentaladaptationandpotentiatestumourmetastasis
AT hanxiaoxi metastasisassociatedgenemag1improvestumourmicroenvironmentaladaptationandpotentiatestumourmetastasis
AT zhangjiakai metastasisassociatedgenemag1improvestumourmicroenvironmentaladaptationandpotentiatestumourmetastasis
AT zhaosiyang metastasisassociatedgenemag1improvestumourmicroenvironmentaladaptationandpotentiatestumourmetastasis
AT yuxiaodan metastasisassociatedgenemag1improvestumourmicroenvironmentaladaptationandpotentiatestumourmetastasis
AT luyinglin metastasisassociatedgenemag1improvestumourmicroenvironmentaladaptationandpotentiatestumourmetastasis