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NOTCH3, a crucial target of miR-491-5p/miR-875-5p, promotes gastric carcinogenesis by upregulating PHLDB2 expression and activating Akt pathway

Aberrant Notch activation has been implicated in multiple malignancies and the identification of NOTCH receptors and related pathways is critical for targeted therapy. In this study, we aim to delineate the most prominent dysregulated NOTCH receptor and comprehensively reveal its deregulation in gas...

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Autores principales: Kang, Wei, Zhang, Jinglin, Huang, Tingting, Zhou, Yuhang, Wong, Chi Chun, Chan, Ronald C. K., Dong, Yujuan, Wu, Feng, Zhang, Bin, Wu, William K. K., Chan, Michael W. Y., Cheng, Alfred S. L., Yu, Jun, Wong, Nathalie, Lo, Kwok Wai, To, Ka Fai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7932926/
https://www.ncbi.nlm.nih.gov/pubmed/33452458
http://dx.doi.org/10.1038/s41388-020-01579-3
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author Kang, Wei
Zhang, Jinglin
Huang, Tingting
Zhou, Yuhang
Wong, Chi Chun
Chan, Ronald C. K.
Dong, Yujuan
Wu, Feng
Zhang, Bin
Wu, William K. K.
Chan, Michael W. Y.
Cheng, Alfred S. L.
Yu, Jun
Wong, Nathalie
Lo, Kwok Wai
To, Ka Fai
author_facet Kang, Wei
Zhang, Jinglin
Huang, Tingting
Zhou, Yuhang
Wong, Chi Chun
Chan, Ronald C. K.
Dong, Yujuan
Wu, Feng
Zhang, Bin
Wu, William K. K.
Chan, Michael W. Y.
Cheng, Alfred S. L.
Yu, Jun
Wong, Nathalie
Lo, Kwok Wai
To, Ka Fai
author_sort Kang, Wei
collection PubMed
description Aberrant Notch activation has been implicated in multiple malignancies and the identification of NOTCH receptors and related pathways is critical for targeted therapy. In this study, we aim to delineate the most prominent dysregulated NOTCH receptor and comprehensively reveal its deregulation in gastric cancer (GC). In the four Notch members, NOTCH3 was found uniformly upregulated and associated with poor clinical outcomes in multiple GC datasets. siRNA-mediated NOTCH3 knockdown demonstrated antitumor effects by suppressing cell proliferation, inhibiting monolayer formation, and impairing cell invasion abilities. Its depletion also induced early and late apoptosis. NOTCH3 was confirmed to be a direct target of two tumor suppressor microRNAs (miRNAs), namely miR-491-5p and miR-875-5p. The activation of NOTCH3 is partly due to the silence of these two miRNAs. Through RNA-seq profiling and functional validation, PHLDB2 was identified as a potent functional downstream modulator for NOTCH3 in gastric carcinogenesis. PHLDB2 expression demonstrated a positive correlation with NOTCH3, but was negatively correlated with miR-491-5p. Akt-mTOR was revealed as the downstream signaling of PHLDB2. The NOTCH3-PHLDB2-Akt co-activation was found in 33.7% GC patients and the activation of this axis predicted poor clinical outcome. GC cells treated with siNOTCH3, siPHLDB2, miR-491-5p, miR-875-5p, were more sensitive to Cisplatin and 5-FU. Taken together, the NOTCH3-PHLDB2-Akt cascade plays oncogenic role in gastric carcinogenesis and serves as a therapeutic target. Our study provided insights into Notch-mediated underlying molecular mechanisms and implied translational potential.
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spelling pubmed-79329262021-03-19 NOTCH3, a crucial target of miR-491-5p/miR-875-5p, promotes gastric carcinogenesis by upregulating PHLDB2 expression and activating Akt pathway Kang, Wei Zhang, Jinglin Huang, Tingting Zhou, Yuhang Wong, Chi Chun Chan, Ronald C. K. Dong, Yujuan Wu, Feng Zhang, Bin Wu, William K. K. Chan, Michael W. Y. Cheng, Alfred S. L. Yu, Jun Wong, Nathalie Lo, Kwok Wai To, Ka Fai Oncogene Article Aberrant Notch activation has been implicated in multiple malignancies and the identification of NOTCH receptors and related pathways is critical for targeted therapy. In this study, we aim to delineate the most prominent dysregulated NOTCH receptor and comprehensively reveal its deregulation in gastric cancer (GC). In the four Notch members, NOTCH3 was found uniformly upregulated and associated with poor clinical outcomes in multiple GC datasets. siRNA-mediated NOTCH3 knockdown demonstrated antitumor effects by suppressing cell proliferation, inhibiting monolayer formation, and impairing cell invasion abilities. Its depletion also induced early and late apoptosis. NOTCH3 was confirmed to be a direct target of two tumor suppressor microRNAs (miRNAs), namely miR-491-5p and miR-875-5p. The activation of NOTCH3 is partly due to the silence of these two miRNAs. Through RNA-seq profiling and functional validation, PHLDB2 was identified as a potent functional downstream modulator for NOTCH3 in gastric carcinogenesis. PHLDB2 expression demonstrated a positive correlation with NOTCH3, but was negatively correlated with miR-491-5p. Akt-mTOR was revealed as the downstream signaling of PHLDB2. The NOTCH3-PHLDB2-Akt co-activation was found in 33.7% GC patients and the activation of this axis predicted poor clinical outcome. GC cells treated with siNOTCH3, siPHLDB2, miR-491-5p, miR-875-5p, were more sensitive to Cisplatin and 5-FU. Taken together, the NOTCH3-PHLDB2-Akt cascade plays oncogenic role in gastric carcinogenesis and serves as a therapeutic target. Our study provided insights into Notch-mediated underlying molecular mechanisms and implied translational potential. Nature Publishing Group UK 2021-01-15 2021 /pmc/articles/PMC7932926/ /pubmed/33452458 http://dx.doi.org/10.1038/s41388-020-01579-3 Text en © The Author(s) 2021 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
Kang, Wei
Zhang, Jinglin
Huang, Tingting
Zhou, Yuhang
Wong, Chi Chun
Chan, Ronald C. K.
Dong, Yujuan
Wu, Feng
Zhang, Bin
Wu, William K. K.
Chan, Michael W. Y.
Cheng, Alfred S. L.
Yu, Jun
Wong, Nathalie
Lo, Kwok Wai
To, Ka Fai
NOTCH3, a crucial target of miR-491-5p/miR-875-5p, promotes gastric carcinogenesis by upregulating PHLDB2 expression and activating Akt pathway
title NOTCH3, a crucial target of miR-491-5p/miR-875-5p, promotes gastric carcinogenesis by upregulating PHLDB2 expression and activating Akt pathway
title_full NOTCH3, a crucial target of miR-491-5p/miR-875-5p, promotes gastric carcinogenesis by upregulating PHLDB2 expression and activating Akt pathway
title_fullStr NOTCH3, a crucial target of miR-491-5p/miR-875-5p, promotes gastric carcinogenesis by upregulating PHLDB2 expression and activating Akt pathway
title_full_unstemmed NOTCH3, a crucial target of miR-491-5p/miR-875-5p, promotes gastric carcinogenesis by upregulating PHLDB2 expression and activating Akt pathway
title_short NOTCH3, a crucial target of miR-491-5p/miR-875-5p, promotes gastric carcinogenesis by upregulating PHLDB2 expression and activating Akt pathway
title_sort notch3, a crucial target of mir-491-5p/mir-875-5p, promotes gastric carcinogenesis by upregulating phldb2 expression and activating akt pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7932926/
https://www.ncbi.nlm.nih.gov/pubmed/33452458
http://dx.doi.org/10.1038/s41388-020-01579-3
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