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Kinomic profile in patient-derived glioma cells during hypoxia reveals c-MET-PI3K dependency for adaptation

Hypoxic microenvironment is a hallmark of solid tumors, especially glioblastoma. The strong reliance of glioma-propagating cells (GPCs) on hypoxia-induced survival advantages is potentially exploitable for drug development. Methods: To identify key signaling pathways for hypoxia adaptation by patien...

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Autores principales: Cheng, Hong Sheng, Marvalim, Charlie, Zhu, Pengcheng, Law, Cheng Lui Daniel, Low, Zhi Yan Jeremy, Chong, Yuk Kien, Ang, Beng Ti, Tang, Carol, Tan, Nguan Soon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8039937/
https://www.ncbi.nlm.nih.gov/pubmed/33859738
http://dx.doi.org/10.7150/thno.54741
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author Cheng, Hong Sheng
Marvalim, Charlie
Zhu, Pengcheng
Law, Cheng Lui Daniel
Low, Zhi Yan Jeremy
Chong, Yuk Kien
Ang, Beng Ti
Tang, Carol
Tan, Nguan Soon
author_facet Cheng, Hong Sheng
Marvalim, Charlie
Zhu, Pengcheng
Law, Cheng Lui Daniel
Low, Zhi Yan Jeremy
Chong, Yuk Kien
Ang, Beng Ti
Tang, Carol
Tan, Nguan Soon
author_sort Cheng, Hong Sheng
collection PubMed
description Hypoxic microenvironment is a hallmark of solid tumors, especially glioblastoma. The strong reliance of glioma-propagating cells (GPCs) on hypoxia-induced survival advantages is potentially exploitable for drug development. Methods: To identify key signaling pathways for hypoxia adaptation by patient-derived GPCs, we performed a kinase inhibitor profiling by screening 188 small molecule inhibitors against 130 different kinases in normoxia and hypoxia. Potential kinase candidates were prioritized for in vitro and in vivo investigations using a ranking algorithm that integrated information from the kinome connectivity network and estimated patients' survival based on expression status. Results: Hypoxic drug screen highlighted extensive modifications of kinomic landscape and a crucial functionality of c-MET-PI3K. c-MET inhibitors diminished phosphorylation of c-MET and PI3K in GPCs subjected to hypoxia, suggesting its role in the hypoxic adaptation of GPCs. Mechanistically, the inhibition of c-MET and PI3K impaired antioxidant defense, leading to oxidative catastrophe and apoptosis. Repurposed c-MET inhibitors PF04217903 and tivantinib exhibited hypoxic-dependent drug synergism with temozolomide, resulting in reduced tumor load and growth of GPC xenografts. Detailed analysis of bulk and single-cell glioblastoma transcriptomes associates the cellular subpopulation over-expressing c-MET with inflamed, hypoxic, metastatic, and stem-like phenotypes. Conclusions: Thus, our “bench to bedside (the use of patient-derived GPCs and xenografts for basic research) and back (validation with independent glioblastoma transcriptome databases)” analysis unravels the novel therapeutic indications of c-MET and PI3K/Akt inhibitors for the treatment of glioblastoma, and potentially other cancers, in the hypoxic tumor microenvironment.
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spelling pubmed-80399372021-04-14 Kinomic profile in patient-derived glioma cells during hypoxia reveals c-MET-PI3K dependency for adaptation Cheng, Hong Sheng Marvalim, Charlie Zhu, Pengcheng Law, Cheng Lui Daniel Low, Zhi Yan Jeremy Chong, Yuk Kien Ang, Beng Ti Tang, Carol Tan, Nguan Soon Theranostics Research Paper Hypoxic microenvironment is a hallmark of solid tumors, especially glioblastoma. The strong reliance of glioma-propagating cells (GPCs) on hypoxia-induced survival advantages is potentially exploitable for drug development. Methods: To identify key signaling pathways for hypoxia adaptation by patient-derived GPCs, we performed a kinase inhibitor profiling by screening 188 small molecule inhibitors against 130 different kinases in normoxia and hypoxia. Potential kinase candidates were prioritized for in vitro and in vivo investigations using a ranking algorithm that integrated information from the kinome connectivity network and estimated patients' survival based on expression status. Results: Hypoxic drug screen highlighted extensive modifications of kinomic landscape and a crucial functionality of c-MET-PI3K. c-MET inhibitors diminished phosphorylation of c-MET and PI3K in GPCs subjected to hypoxia, suggesting its role in the hypoxic adaptation of GPCs. Mechanistically, the inhibition of c-MET and PI3K impaired antioxidant defense, leading to oxidative catastrophe and apoptosis. Repurposed c-MET inhibitors PF04217903 and tivantinib exhibited hypoxic-dependent drug synergism with temozolomide, resulting in reduced tumor load and growth of GPC xenografts. Detailed analysis of bulk and single-cell glioblastoma transcriptomes associates the cellular subpopulation over-expressing c-MET with inflamed, hypoxic, metastatic, and stem-like phenotypes. Conclusions: Thus, our “bench to bedside (the use of patient-derived GPCs and xenografts for basic research) and back (validation with independent glioblastoma transcriptome databases)” analysis unravels the novel therapeutic indications of c-MET and PI3K/Akt inhibitors for the treatment of glioblastoma, and potentially other cancers, in the hypoxic tumor microenvironment. Ivyspring International Publisher 2021-03-05 /pmc/articles/PMC8039937/ /pubmed/33859738 http://dx.doi.org/10.7150/thno.54741 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Cheng, Hong Sheng
Marvalim, Charlie
Zhu, Pengcheng
Law, Cheng Lui Daniel
Low, Zhi Yan Jeremy
Chong, Yuk Kien
Ang, Beng Ti
Tang, Carol
Tan, Nguan Soon
Kinomic profile in patient-derived glioma cells during hypoxia reveals c-MET-PI3K dependency for adaptation
title Kinomic profile in patient-derived glioma cells during hypoxia reveals c-MET-PI3K dependency for adaptation
title_full Kinomic profile in patient-derived glioma cells during hypoxia reveals c-MET-PI3K dependency for adaptation
title_fullStr Kinomic profile in patient-derived glioma cells during hypoxia reveals c-MET-PI3K dependency for adaptation
title_full_unstemmed Kinomic profile in patient-derived glioma cells during hypoxia reveals c-MET-PI3K dependency for adaptation
title_short Kinomic profile in patient-derived glioma cells during hypoxia reveals c-MET-PI3K dependency for adaptation
title_sort kinomic profile in patient-derived glioma cells during hypoxia reveals c-met-pi3k dependency for adaptation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8039937/
https://www.ncbi.nlm.nih.gov/pubmed/33859738
http://dx.doi.org/10.7150/thno.54741
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