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Epigenetic suppression of EGFR signaling in G-CIMP+ glioblastomas

The intrinsic signaling cascades and cell states associated with the Glioma CpG Island Methylator Phenotype (G-CIMP) remain poorly understood. Using published mRNA signatures associated with EGFR activation, we demonstrate that G-CIMP+ tumors harbor decreased EGFR signaling using three independent d...

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Autores principales: Li, Jie, Taich, Zachary J., Goyal, Amit, Gonda, David, Akers, Johnny, Adhikari, Bandita, Patel, Kunal, Vandenberg, Scott, Yan, Wei, Bao, Zhaoshi, Carter, Bob S., Wang, Renzhi, Mao, Ying, Jiang, Tao, Chen, Clark C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4202127/
https://www.ncbi.nlm.nih.gov/pubmed/25277177
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author Li, Jie
Taich, Zachary J.
Goyal, Amit
Gonda, David
Akers, Johnny
Adhikari, Bandita
Patel, Kunal
Vandenberg, Scott
Yan, Wei
Bao, Zhaoshi
Carter, Bob S.
Wang, Renzhi
Mao, Ying
Jiang, Tao
Chen, Clark C.
author_facet Li, Jie
Taich, Zachary J.
Goyal, Amit
Gonda, David
Akers, Johnny
Adhikari, Bandita
Patel, Kunal
Vandenberg, Scott
Yan, Wei
Bao, Zhaoshi
Carter, Bob S.
Wang, Renzhi
Mao, Ying
Jiang, Tao
Chen, Clark C.
author_sort Li, Jie
collection PubMed
description The intrinsic signaling cascades and cell states associated with the Glioma CpG Island Methylator Phenotype (G-CIMP) remain poorly understood. Using published mRNA signatures associated with EGFR activation, we demonstrate that G-CIMP+ tumors harbor decreased EGFR signaling using three independent datasets, including the Chinese Glioma Genome Atlas(CGGA; n=155), the REMBRANDT dataset (n=288), and The Cancer Genome Atlas (TCGA; n=406). Additionally, an independent collection of 25 fresh-frozen glioblastomas confirmed lowered pERK levels in G-CIMP+ specimens (p<0.001), indicating suppressed EGFR signaling. Analysis of TCGA glioblastomas revealed that G-CIMP+ glioblastomas harbored lowered mRNA levels for EGFR and H-Ras. Induction of G-CIMP+ state by exogenous expression of a mutated isocitrate dehydrogenase 1, IDH1-R132H, suppressed EGFR and H-Ras protein expression as well as pERK accumulation in independent glioblastoma models. These suppressions were associated with increased deposition of the repressive histone markers, H3K9me3 and H3K27me3, in the EGFR and H-Ras promoter regions. The IDH1-R132H expression-induced pERK suppression can be reversed by exogenous expression of H-RasG12V. Finally, the G-CIMP+ Ink4a-Arf(−/−) EGFRvIII glioblastoma line was more resistant to the EGFR inhibitor, Gefitinib, relative to its isogenic G-CIMP- counterpart. These results suggest that G-CIMP epigenetically regulates EGFR signaling and serves as a predictive biomarker for EGFR inhibitors in glioblastoma patients.
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spelling pubmed-42021272014-10-21 Epigenetic suppression of EGFR signaling in G-CIMP+ glioblastomas Li, Jie Taich, Zachary J. Goyal, Amit Gonda, David Akers, Johnny Adhikari, Bandita Patel, Kunal Vandenberg, Scott Yan, Wei Bao, Zhaoshi Carter, Bob S. Wang, Renzhi Mao, Ying Jiang, Tao Chen, Clark C. Oncotarget Priority Research Paper The intrinsic signaling cascades and cell states associated with the Glioma CpG Island Methylator Phenotype (G-CIMP) remain poorly understood. Using published mRNA signatures associated with EGFR activation, we demonstrate that G-CIMP+ tumors harbor decreased EGFR signaling using three independent datasets, including the Chinese Glioma Genome Atlas(CGGA; n=155), the REMBRANDT dataset (n=288), and The Cancer Genome Atlas (TCGA; n=406). Additionally, an independent collection of 25 fresh-frozen glioblastomas confirmed lowered pERK levels in G-CIMP+ specimens (p<0.001), indicating suppressed EGFR signaling. Analysis of TCGA glioblastomas revealed that G-CIMP+ glioblastomas harbored lowered mRNA levels for EGFR and H-Ras. Induction of G-CIMP+ state by exogenous expression of a mutated isocitrate dehydrogenase 1, IDH1-R132H, suppressed EGFR and H-Ras protein expression as well as pERK accumulation in independent glioblastoma models. These suppressions were associated with increased deposition of the repressive histone markers, H3K9me3 and H3K27me3, in the EGFR and H-Ras promoter regions. The IDH1-R132H expression-induced pERK suppression can be reversed by exogenous expression of H-RasG12V. Finally, the G-CIMP+ Ink4a-Arf(−/−) EGFRvIII glioblastoma line was more resistant to the EGFR inhibitor, Gefitinib, relative to its isogenic G-CIMP- counterpart. These results suggest that G-CIMP epigenetically regulates EGFR signaling and serves as a predictive biomarker for EGFR inhibitors in glioblastoma patients. Impact Journals LLC 2014-08-16 /pmc/articles/PMC4202127/ /pubmed/25277177 Text en Copyright: © 2014 Li 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 Priority Research Paper
Li, Jie
Taich, Zachary J.
Goyal, Amit
Gonda, David
Akers, Johnny
Adhikari, Bandita
Patel, Kunal
Vandenberg, Scott
Yan, Wei
Bao, Zhaoshi
Carter, Bob S.
Wang, Renzhi
Mao, Ying
Jiang, Tao
Chen, Clark C.
Epigenetic suppression of EGFR signaling in G-CIMP+ glioblastomas
title Epigenetic suppression of EGFR signaling in G-CIMP+ glioblastomas
title_full Epigenetic suppression of EGFR signaling in G-CIMP+ glioblastomas
title_fullStr Epigenetic suppression of EGFR signaling in G-CIMP+ glioblastomas
title_full_unstemmed Epigenetic suppression of EGFR signaling in G-CIMP+ glioblastomas
title_short Epigenetic suppression of EGFR signaling in G-CIMP+ glioblastomas
title_sort epigenetic suppression of egfr signaling in g-cimp+ glioblastomas
topic Priority Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4202127/
https://www.ncbi.nlm.nih.gov/pubmed/25277177
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