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Loss of EGFR signaling-regulated miR-203 promotes prostate cancer bone metastasis and tyrosine kinase inhibitors resistance

Activation of EGFR signaling pathway leads to prostate cancer bone metastasis; however, therapies targeting EGFR have demonstrated limited effectiveness and led to drug resistance. miR-203 levels are down-regulated in clinical samples of primary prostate cancer and further reduced in metastatic pros...

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Autores principales: Siu, Man Kit, Abou-Kheir, Wassim, Yin, Juan Juan, Chang, Yung-Sheng, Barrett, Ben, Suau, Florent, Casey, Orla, Chen, Wei-Yu, Fang, Lei, Hynes, Paul, Hsieh, Yao-Yu, Liu, Yen-Nien, Huang, Jiaoti, Kelly, Kathleen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4116519/
https://www.ncbi.nlm.nih.gov/pubmed/25004126
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author Siu, Man Kit
Abou-Kheir, Wassim
Yin, Juan Juan
Chang, Yung-Sheng
Barrett, Ben
Suau, Florent
Casey, Orla
Chen, Wei-Yu
Fang, Lei
Hynes, Paul
Hsieh, Yao-Yu
Liu, Yen-Nien
Huang, Jiaoti
Kelly, Kathleen
author_facet Siu, Man Kit
Abou-Kheir, Wassim
Yin, Juan Juan
Chang, Yung-Sheng
Barrett, Ben
Suau, Florent
Casey, Orla
Chen, Wei-Yu
Fang, Lei
Hynes, Paul
Hsieh, Yao-Yu
Liu, Yen-Nien
Huang, Jiaoti
Kelly, Kathleen
author_sort Siu, Man Kit
collection PubMed
description Activation of EGFR signaling pathway leads to prostate cancer bone metastasis; however, therapies targeting EGFR have demonstrated limited effectiveness and led to drug resistance. miR-203 levels are down-regulated in clinical samples of primary prostate cancer and further reduced in metastatic prostate cancer. Here we show that ectopic miR-203 expression displayed reduced bone metastasis and induced sensitivity to tyrosine kinase inhibitors (TKIs) treatment in a xenograft model. Our results demonstrate that the induction of bone metastasis and TKI resistance require miR-203 down-regulation, activation of the EGFR pathway via altered expression of EGFR ligands (EREG and TGFA) and anti-apoptotic proteins (API5, BIRC2, and TRIAP1). Importantly, a sufficient reconstitution of invasiveness and resistance to TKIs treatment was observed in cells transfected with anti-miR-203. In prostate cancer patients, our data showed that miR-203 levels were inversely correlated with the expression of two EGFR ligands, EREG and TGFA, and an EGFR dependent gene signature. Our results support the existence of a miR-203, EGFR, TKIs resistance regulatory network in prostate cancer progression. We propose that the loss of miR-203 is a molecular link in the progression of prostate cancer metastasis and TKIs resistance characterized by high EGFR ligands output and anti-apoptotic proteins activation.
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spelling pubmed-41165192014-08-04 Loss of EGFR signaling-regulated miR-203 promotes prostate cancer bone metastasis and tyrosine kinase inhibitors resistance Siu, Man Kit Abou-Kheir, Wassim Yin, Juan Juan Chang, Yung-Sheng Barrett, Ben Suau, Florent Casey, Orla Chen, Wei-Yu Fang, Lei Hynes, Paul Hsieh, Yao-Yu Liu, Yen-Nien Huang, Jiaoti Kelly, Kathleen Oncotarget Research Paper Activation of EGFR signaling pathway leads to prostate cancer bone metastasis; however, therapies targeting EGFR have demonstrated limited effectiveness and led to drug resistance. miR-203 levels are down-regulated in clinical samples of primary prostate cancer and further reduced in metastatic prostate cancer. Here we show that ectopic miR-203 expression displayed reduced bone metastasis and induced sensitivity to tyrosine kinase inhibitors (TKIs) treatment in a xenograft model. Our results demonstrate that the induction of bone metastasis and TKI resistance require miR-203 down-regulation, activation of the EGFR pathway via altered expression of EGFR ligands (EREG and TGFA) and anti-apoptotic proteins (API5, BIRC2, and TRIAP1). Importantly, a sufficient reconstitution of invasiveness and resistance to TKIs treatment was observed in cells transfected with anti-miR-203. In prostate cancer patients, our data showed that miR-203 levels were inversely correlated with the expression of two EGFR ligands, EREG and TGFA, and an EGFR dependent gene signature. Our results support the existence of a miR-203, EGFR, TKIs resistance regulatory network in prostate cancer progression. We propose that the loss of miR-203 is a molecular link in the progression of prostate cancer metastasis and TKIs resistance characterized by high EGFR ligands output and anti-apoptotic proteins activation. Impact Journals LLC 2014-05-20 /pmc/articles/PMC4116519/ /pubmed/25004126 Text en Copyright: © 2014 Siu et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Siu, Man Kit
Abou-Kheir, Wassim
Yin, Juan Juan
Chang, Yung-Sheng
Barrett, Ben
Suau, Florent
Casey, Orla
Chen, Wei-Yu
Fang, Lei
Hynes, Paul
Hsieh, Yao-Yu
Liu, Yen-Nien
Huang, Jiaoti
Kelly, Kathleen
Loss of EGFR signaling-regulated miR-203 promotes prostate cancer bone metastasis and tyrosine kinase inhibitors resistance
title Loss of EGFR signaling-regulated miR-203 promotes prostate cancer bone metastasis and tyrosine kinase inhibitors resistance
title_full Loss of EGFR signaling-regulated miR-203 promotes prostate cancer bone metastasis and tyrosine kinase inhibitors resistance
title_fullStr Loss of EGFR signaling-regulated miR-203 promotes prostate cancer bone metastasis and tyrosine kinase inhibitors resistance
title_full_unstemmed Loss of EGFR signaling-regulated miR-203 promotes prostate cancer bone metastasis and tyrosine kinase inhibitors resistance
title_short Loss of EGFR signaling-regulated miR-203 promotes prostate cancer bone metastasis and tyrosine kinase inhibitors resistance
title_sort loss of egfr signaling-regulated mir-203 promotes prostate cancer bone metastasis and tyrosine kinase inhibitors resistance
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4116519/
https://www.ncbi.nlm.nih.gov/pubmed/25004126
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