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Prostate tumor-induced stromal reprogramming generates Tenascin C that promotes prostate cancer metastasis through YAP/TAZ inhibition

Metastatic prostate cancer (PCa) in bone induces bone-forming lesions that enhance PCa progression. How tumor-induced bone formation enhances PCa progression is not known. We have previously shown that PCa-induced bone originates from endothelial cells (EC) that have undergone endothelial-to-osteobl...

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Autores principales: Lee, Yu-Chen, Lin, Song-Chang, Yu, Guoyu, Zhu, Ming, Song, Jian H, Rivera, Keith, Pappin, Darryl J., Logothetis, Christopher J., Panaretakis, Theocharis, Wang, Guocan, Yu-Lee, Li-Yuan, Lin, Sue-Hwa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8818031/
https://www.ncbi.nlm.nih.gov/pubmed/34845375
http://dx.doi.org/10.1038/s41388-021-02131-7
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author Lee, Yu-Chen
Lin, Song-Chang
Yu, Guoyu
Zhu, Ming
Song, Jian H
Rivera, Keith
Pappin, Darryl J.
Logothetis, Christopher J.
Panaretakis, Theocharis
Wang, Guocan
Yu-Lee, Li-Yuan
Lin, Sue-Hwa
author_facet Lee, Yu-Chen
Lin, Song-Chang
Yu, Guoyu
Zhu, Ming
Song, Jian H
Rivera, Keith
Pappin, Darryl J.
Logothetis, Christopher J.
Panaretakis, Theocharis
Wang, Guocan
Yu-Lee, Li-Yuan
Lin, Sue-Hwa
author_sort Lee, Yu-Chen
collection PubMed
description Metastatic prostate cancer (PCa) in bone induces bone-forming lesions that enhance PCa progression. How tumor-induced bone formation enhances PCa progression is not known. We have previously shown that PCa-induced bone originates from endothelial cells (EC) that have undergone endothelial-to-osteoblast (EC-to-OSB) transition by tumor-secreted BMP4. Here, we show that EC-to-OSB transition leads to changes in the tumor microenvironment that increases the metastatic potential of PCa cells. We found that conditioned medium (CM) from EC-OSB hybrid cells increases the migration, invasion and survival of PC3-mm2 and C4-2B4 PCa cells. Quantitative mass spectrometry (iTRAQ) identified Tenascin C (TNC) as one of the major proteins secreted from EC-OSB hybrid cells. TNC expression in tumor-induced osteoblasts was confirmed by immunohistochemistry of MDA-PCa118b xenograft and human bone metastasis specimens. Mechanistically, BMP4 increases TNC expression in EC-OSB cells through the Smad1-Notch/Hey1 pathway. How TNC promotes PCa metastasis was next interrogated by in vitro and in vivo studies. In vitro studies showed that a TNC neutralizing antibody inhibits EC-OSB-CM-mediated PCa cell migration and survival. TNC knockdown decreased, while addition of recombinant TNC or TNC overexpression increased migration and anchorage-independent growth of PC3 or C4-2b cells. When injected orthotopically, PC3-mm2-shTNC clones decreased metastasis to bone, while C4-2b-TNC overexpressing cells increased metastasis to lymph nodes. TNC enhances PCa cell migration through α5β1 integrin-mediated YAP/TAZ inhibition. These studies elucidate that tumor-induced stromal reprogramming generates TNC that enhances PCa metastasis and suggest that TNC may be a target for PCa therapy.
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spelling pubmed-88180312022-05-29 Prostate tumor-induced stromal reprogramming generates Tenascin C that promotes prostate cancer metastasis through YAP/TAZ inhibition Lee, Yu-Chen Lin, Song-Chang Yu, Guoyu Zhu, Ming Song, Jian H Rivera, Keith Pappin, Darryl J. Logothetis, Christopher J. Panaretakis, Theocharis Wang, Guocan Yu-Lee, Li-Yuan Lin, Sue-Hwa Oncogene Article Metastatic prostate cancer (PCa) in bone induces bone-forming lesions that enhance PCa progression. How tumor-induced bone formation enhances PCa progression is not known. We have previously shown that PCa-induced bone originates from endothelial cells (EC) that have undergone endothelial-to-osteoblast (EC-to-OSB) transition by tumor-secreted BMP4. Here, we show that EC-to-OSB transition leads to changes in the tumor microenvironment that increases the metastatic potential of PCa cells. We found that conditioned medium (CM) from EC-OSB hybrid cells increases the migration, invasion and survival of PC3-mm2 and C4-2B4 PCa cells. Quantitative mass spectrometry (iTRAQ) identified Tenascin C (TNC) as one of the major proteins secreted from EC-OSB hybrid cells. TNC expression in tumor-induced osteoblasts was confirmed by immunohistochemistry of MDA-PCa118b xenograft and human bone metastasis specimens. Mechanistically, BMP4 increases TNC expression in EC-OSB cells through the Smad1-Notch/Hey1 pathway. How TNC promotes PCa metastasis was next interrogated by in vitro and in vivo studies. In vitro studies showed that a TNC neutralizing antibody inhibits EC-OSB-CM-mediated PCa cell migration and survival. TNC knockdown decreased, while addition of recombinant TNC or TNC overexpression increased migration and anchorage-independent growth of PC3 or C4-2b cells. When injected orthotopically, PC3-mm2-shTNC clones decreased metastasis to bone, while C4-2b-TNC overexpressing cells increased metastasis to lymph nodes. TNC enhances PCa cell migration through α5β1 integrin-mediated YAP/TAZ inhibition. These studies elucidate that tumor-induced stromal reprogramming generates TNC that enhances PCa metastasis and suggest that TNC may be a target for PCa therapy. 2022-02 2021-11-29 /pmc/articles/PMC8818031/ /pubmed/34845375 http://dx.doi.org/10.1038/s41388-021-02131-7 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: https://www.springernature.com/gp/open-research/policies/accepted-manuscript-terms
spellingShingle Article
Lee, Yu-Chen
Lin, Song-Chang
Yu, Guoyu
Zhu, Ming
Song, Jian H
Rivera, Keith
Pappin, Darryl J.
Logothetis, Christopher J.
Panaretakis, Theocharis
Wang, Guocan
Yu-Lee, Li-Yuan
Lin, Sue-Hwa
Prostate tumor-induced stromal reprogramming generates Tenascin C that promotes prostate cancer metastasis through YAP/TAZ inhibition
title Prostate tumor-induced stromal reprogramming generates Tenascin C that promotes prostate cancer metastasis through YAP/TAZ inhibition
title_full Prostate tumor-induced stromal reprogramming generates Tenascin C that promotes prostate cancer metastasis through YAP/TAZ inhibition
title_fullStr Prostate tumor-induced stromal reprogramming generates Tenascin C that promotes prostate cancer metastasis through YAP/TAZ inhibition
title_full_unstemmed Prostate tumor-induced stromal reprogramming generates Tenascin C that promotes prostate cancer metastasis through YAP/TAZ inhibition
title_short Prostate tumor-induced stromal reprogramming generates Tenascin C that promotes prostate cancer metastasis through YAP/TAZ inhibition
title_sort prostate tumor-induced stromal reprogramming generates tenascin c that promotes prostate cancer metastasis through yap/taz inhibition
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8818031/
https://www.ncbi.nlm.nih.gov/pubmed/34845375
http://dx.doi.org/10.1038/s41388-021-02131-7
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