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Hypoxia-induced Jagged2 promotes breast cancer metastasis and self-renewal of cancer stem-like cells

Notch signaling is often and aberrantly activated by hypoxia during tumor progression; however, the exact pathological role of hypoxia-induced Notch signaling in tumor metastasis is as yet poorly understood. In this study, we aimed to define the mechanism of Notch ligand activation by hypoxia in bot...

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Autores principales: Xing, Fei, Okuda, Hiroshi, Watabe, Misako, Kobayashi, Aya, Pai, Sudha K., Liu, Wen, Pandey, Puspa R., Fukuda, Koji, Hirota, Shigeru, Sugai, Tamotsu, Wakabayshi, Go, Koeda, Keisuke, Kashiwaba, Masahiro, Suzuki, Kazuyuki, Chiba, Toshimi, Endo, Masaki, Mo, Yin-Yuan, Watabe, Kounosuke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3145824/
https://www.ncbi.nlm.nih.gov/pubmed/21499308
http://dx.doi.org/10.1038/onc.2011.122
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author Xing, Fei
Okuda, Hiroshi
Watabe, Misako
Kobayashi, Aya
Pai, Sudha K.
Liu, Wen
Pandey, Puspa R.
Fukuda, Koji
Hirota, Shigeru
Sugai, Tamotsu
Wakabayshi, Go
Koeda, Keisuke
Kashiwaba, Masahiro
Suzuki, Kazuyuki
Chiba, Toshimi
Endo, Masaki
Mo, Yin-Yuan
Watabe, Kounosuke
author_facet Xing, Fei
Okuda, Hiroshi
Watabe, Misako
Kobayashi, Aya
Pai, Sudha K.
Liu, Wen
Pandey, Puspa R.
Fukuda, Koji
Hirota, Shigeru
Sugai, Tamotsu
Wakabayshi, Go
Koeda, Keisuke
Kashiwaba, Masahiro
Suzuki, Kazuyuki
Chiba, Toshimi
Endo, Masaki
Mo, Yin-Yuan
Watabe, Kounosuke
author_sort Xing, Fei
collection PubMed
description Notch signaling is often and aberrantly activated by hypoxia during tumor progression; however, the exact pathological role of hypoxia-induced Notch signaling in tumor metastasis is as yet poorly understood. In this study, we aimed to define the mechanism of Notch ligand activation by hypoxia in both primary tumor and bone stromal cells in the metastatic niche and to clarify their roles in tumor progression. We have analyzed the expression profiles of various Notch liagnds in 779 breast cancer patients in GEO database and found that the expression of Jagged2 among all five ligands is most significantly correlated with the overall- and metastasis-free survival of breast cancer patients. The results of our immunohistochemical (IHC) analysis for Jagged2 in 61 clinical samples also revealed that both Jagged2 and Notch signaling were strongly up-regulated at the hypoxic invasive front. Activation of Jagged2 by hypoxia in tumor cells induced EMT and also promoted cell survival in vitro. Notably, a γ-secretase inhibitor significantly blocked Notch-mediated invasion and survival under hypoxia by promoting expression of E-cadherin and inhibiting Akt phosphorylation. Importantly, Jagged2 was also found to be up-regulated in bone marrow stroma under hypoxia and promoted the growth of cancer stem-like cells by activating their Notch signaling. Therefore, hypoxia-induced Jagged2 activation in both tumor invasive front and normal bone stroma plays a critical role in tumor progression and metastasis, and Jagged2 is considered to be a valuable prognostic marker and may serve as a novel therapeutic target for metastatic breast cancer.
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spelling pubmed-31458242012-03-29 Hypoxia-induced Jagged2 promotes breast cancer metastasis and self-renewal of cancer stem-like cells Xing, Fei Okuda, Hiroshi Watabe, Misako Kobayashi, Aya Pai, Sudha K. Liu, Wen Pandey, Puspa R. Fukuda, Koji Hirota, Shigeru Sugai, Tamotsu Wakabayshi, Go Koeda, Keisuke Kashiwaba, Masahiro Suzuki, Kazuyuki Chiba, Toshimi Endo, Masaki Mo, Yin-Yuan Watabe, Kounosuke Oncogene Article Notch signaling is often and aberrantly activated by hypoxia during tumor progression; however, the exact pathological role of hypoxia-induced Notch signaling in tumor metastasis is as yet poorly understood. In this study, we aimed to define the mechanism of Notch ligand activation by hypoxia in both primary tumor and bone stromal cells in the metastatic niche and to clarify their roles in tumor progression. We have analyzed the expression profiles of various Notch liagnds in 779 breast cancer patients in GEO database and found that the expression of Jagged2 among all five ligands is most significantly correlated with the overall- and metastasis-free survival of breast cancer patients. The results of our immunohistochemical (IHC) analysis for Jagged2 in 61 clinical samples also revealed that both Jagged2 and Notch signaling were strongly up-regulated at the hypoxic invasive front. Activation of Jagged2 by hypoxia in tumor cells induced EMT and also promoted cell survival in vitro. Notably, a γ-secretase inhibitor significantly blocked Notch-mediated invasion and survival under hypoxia by promoting expression of E-cadherin and inhibiting Akt phosphorylation. Importantly, Jagged2 was also found to be up-regulated in bone marrow stroma under hypoxia and promoted the growth of cancer stem-like cells by activating their Notch signaling. Therefore, hypoxia-induced Jagged2 activation in both tumor invasive front and normal bone stroma plays a critical role in tumor progression and metastasis, and Jagged2 is considered to be a valuable prognostic marker and may serve as a novel therapeutic target for metastatic breast cancer. 2011-04-18 2011-09-29 /pmc/articles/PMC3145824/ /pubmed/21499308 http://dx.doi.org/10.1038/onc.2011.122 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Xing, Fei
Okuda, Hiroshi
Watabe, Misako
Kobayashi, Aya
Pai, Sudha K.
Liu, Wen
Pandey, Puspa R.
Fukuda, Koji
Hirota, Shigeru
Sugai, Tamotsu
Wakabayshi, Go
Koeda, Keisuke
Kashiwaba, Masahiro
Suzuki, Kazuyuki
Chiba, Toshimi
Endo, Masaki
Mo, Yin-Yuan
Watabe, Kounosuke
Hypoxia-induced Jagged2 promotes breast cancer metastasis and self-renewal of cancer stem-like cells
title Hypoxia-induced Jagged2 promotes breast cancer metastasis and self-renewal of cancer stem-like cells
title_full Hypoxia-induced Jagged2 promotes breast cancer metastasis and self-renewal of cancer stem-like cells
title_fullStr Hypoxia-induced Jagged2 promotes breast cancer metastasis and self-renewal of cancer stem-like cells
title_full_unstemmed Hypoxia-induced Jagged2 promotes breast cancer metastasis and self-renewal of cancer stem-like cells
title_short Hypoxia-induced Jagged2 promotes breast cancer metastasis and self-renewal of cancer stem-like cells
title_sort hypoxia-induced jagged2 promotes breast cancer metastasis and self-renewal of cancer stem-like cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3145824/
https://www.ncbi.nlm.nih.gov/pubmed/21499308
http://dx.doi.org/10.1038/onc.2011.122
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