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PMID: 31431463 Published · ppublish English Journal Article

Pathogenic Epigenetic Consequences of Genetic Alterations in IDH-Wild-Type Diffuse Astrocytic Gliomas.

Cancer research ·Vol. 79 ·No. 19 ·2019-10-01 ·页码 4814-4827

Ohka F, Shinjo K, Deguchi S, Matsui Y, Okuno Y, Katsushima K, Suzuki M, Kato A, Ogiso N, Yamamichi A, Aoki K, Suzuki H, Sato S, Arul Rayan N, Prabhakar S, Göke J, Shimamura T, Maruyama R, Takahashi S, Suzumura A, Kimura H, Wakabayashi T, Zong H, Natsume A, Kondo Y

Abstract

Gliomas are classified by combining histopathologic and molecular features, including isocitrate dehydrogenase (IDH) status. Although IDH-wild-type diffuse astrocytic glioma (DAG) shows a more aggressive phenotype than IDH-mutant type, lack of knowledge regarding relevant molecular drivers for this type of tumor has hindered the development of therapeutic agents. Here, we examined human IDH-wild-type DAGs and a glioma mouse model with a mosaic analysis with double markers (MADM) system, which concurrently lacks p53 and NF1 and spontaneously develops tumors highly comparable with human IDH-wild-type DAG without characteristic molecular features of glioblastoma (DAG-nonMF). During tumor formation, enhancer of zeste homolog (EZH2) and the other polycomb repressive complex 2 (PRC2) components were upregulated even at an early stage of tumorigenesis, together with an increased number of genes with H3K27me3 or H3K27me3 and H3K4me3 bivalent modifications. Among the epigenetically dysregulated genes, frizzled-8 (Fzd8), which is known to be a cancer- and stem cell reprogramming-related gene, was gradually silenced during tumorigenesis. Genetic and pharmacologic inhibition of EZH2 in MADM mice showed reactivation of aberrant H3K27me3 target genes, including Fzd8, together with significant reduction of tumor size. Our study clarifies a pathogenic molecular pathway of IDH-wild-type DAG-nonMF that depends on EZH2 activity and provides a strong rationale for targeting EZH2 as a promising therapeutic approach for this type of glioma. SIGNIFICANCE: EZH2 is involved in the generation of IDH-wild-type diffuse astrocytic gliomas and is a potential therapeutic target for this type of glioma. GRAPHICAL ABSTRACT: http://cancerres.aacrjournals.org/content/canres/79/19/4814/F1.large.jpg.

MeSH 主题词
Animals Astrocytoma/genetics,metabolism,pathology Enhancer of Zeste Homolog 2 Protein/genetics,metabolism Epigenesis, Genetic/genetics Humans Isocitrate Dehydrogenase/genetics Mice Mice, Transgenic
化学物质
Isocitrate Dehydrogenase Enhancer of Zeste Homolog 2 Protein
作者与单位
共 25 位作者,点击展开单位 / ORCID
Ohka Fumiharu
Division of Cancer Biology, Nagoya University Graduate School of Medicine, Nagoya, Japan. | Department of Neurosurgery, Nagoya University Graduate School of Medicine, Nagoya, Japan.
Shinjo Keiko
Division of Cancer Biology, Nagoya University Graduate School of Medicine, Nagoya, Japan.
Deguchi Shoichi
Division of Cancer Biology, Nagoya University Graduate School of Medicine, Nagoya, Japan. | Department of Neurosurgery, Nagoya University Graduate School of Medicine, Nagoya, Japan.
Matsui Yusuke
Laboratory of Intelligence Healthcare, Nagoya University Graduate School of Medicine, Nagoya, Japan.
Okuno Yusuke
Center for Advanced Medicine and Clinical Research, Nagoya University Hospital, Nagoya, Japan.
Katsushima Keisuke
Division of Cancer Biology, Nagoya University Graduate School of Medicine, Nagoya, Japan.
Suzuki Miho
Division of Cancer Biology, Nagoya University Graduate School of Medicine, Nagoya, Japan.
Kato Akira ORCID
Department of Neurosurgery, Nagoya University Graduate School of Medicine, Nagoya, Japan.
Ogiso Noboru
Laboratory of Experimental Animal, National Center for Geriatrics and Gerontology (NCGG), Obu, Japan.
Yamamichi Akane
Division of Cancer Biology, Nagoya University Graduate School of Medicine, Nagoya, Japan. | Department of Neurosurgery, Nagoya University Graduate School of Medicine, Nagoya, Japan.
Aoki Kosuke ORCID
Department of Neurosurgery, Nagoya University Graduate School of Medicine, Nagoya, Japan.
Suzuki Hiromichi
Department of Neurosurgery, Nagoya University Graduate School of Medicine, Nagoya, Japan.
Sato Shinya
Experimental Pathology and Tumor Biology, Nagoya City University Graduate School of Medical Sciences, Nagoya, Japan.
Arul Rayan Nirmala
Computational and Systems Biology, Genome Institute of Singapore, Singapore, Singapore.
Prabhakar Shyam
Computational and Systems Biology, Genome Institute of Singapore, Singapore, Singapore.
Göke Jonathan
Computational and Systems Biology, Genome Institute of Singapore, Singapore, Singapore.
Shimamura Teppei
Division of Systems Biology, Nagoya University Graduate School of Medicine, Nagoya, Japan.
Maruyama Reo
Project for Cancer Epigenomics, Cancer Institute of Japanese Foundation for Cancer Research, Tokyo, Japan.
Takahashi Satoru ORCID
Experimental Pathology and Tumor Biology, Nagoya City University Graduate School of Medical Sciences, Nagoya, Japan.
Suzumura Akio
Department of Neuroimmunology, Research Institute of Environmental Medicine, Nagoya University, Nagoya, Japan.
Kimura Hiroshi ORCID
Cell Biology Center, Institute of Innovative Research, Tokyo Institute of Technology, Yokohama, Japan.
Wakabayashi Toshihiko
Department of Neurosurgery, Nagoya University Graduate School of Medicine, Nagoya, Japan.
Zong Hui ORCID
Department of Microbiology, Immunology and Cancer Biology, University of Virginia School of Medicine, Charlottesville, Virginia.
Natsume Atsushi
Department of Neurosurgery, Nagoya University Graduate School of Medicine, Nagoya, Japan. ykondo@med.nagoya-u.ac.jp anatsume@med.nagoya-u.ac.jp.
Kondo Yutaka
Division of Cancer Biology, Nagoya University Graduate School of Medicine, Nagoya, Japan. ykondo@med.nagoya-u.ac.jp anatsume@med.nagoya-u.ac.jp.
Article Info
Journal
Cancer research
Abbr.
Cancer Res
ISSN
1538-7445
Published
2019-10-01
电子出版
2019-00-20
页码
4814-4827
Language
English
Country/Region
United States
NLM ID
2984705R
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