학술논문

Molecular Profiling Reveals Biologically Discrete Subsets and Pathways of Progression in Diffuse Glioma
Document Type
article
Author
Ceccarelli, MicheleBarthel, Floris PMalta, Tathiane MSabedot, Thais SSalama, Sofie RMurray, Bradley AMorozova, OlenaNewton, YuliaRadenbaugh, AmiePagnotta, Stefano MAnjum, SamreenWang, JiguangManyam, GanirajuZoppoli, PietroLing, ShiyunRao, Arjun AGrifford, MiaCherniack, Andrew DZhang, HaileiPoisson, LailaCarlotti, Carlos Gilbertoda Cunha Tirapelli, Daniela PrettiRao, ArvindMikkelsen, TomLau, Ching CYung, WK AlfredRabadan, RaulHuse, JasonBrat, Daniel JLehman, Norman LBarnholtz-Sloan, Jill SZheng, SiyuanHess, KennethRao, GaneshMeyerson, MatthewBeroukhim, RameenCooper, LeeAkbani, RehanWrensch, MargaretHaussler, DavidAldape, Kenneth DLaird, Peter WGutmann, David HNetwork, TCGA ResearchArachchi, HarindraAuman, J ToddBalasundaram, MirunaBalu, SaianandBarnett, GeneBaylin, StephenBell, SueBenz, ChristopherBir, NatalieBlack, Keith LBodenheimer, TomBoice, LoriBootwalla, Moiz SBowen, JayBristow, Christopher AButterfield, Yaron SNChen, Qing-RongChin, LyndaCho, JuokChuah, EricChudamani, SudhaCoetzee, Simon GCohen, Mark LColman, HowardCouce, MartaD’Angelo, FulvioDavidsen, TanjaDavis, AmyDemchok, John ADevine, KarenDing, LiDuell, RebeccaElder, J BradleyEschbacher, Jennifer MFehrenbach, AshleyFerguson, MartinFrazer, ScottFuller, GregoryFulop, JordonnaGabriel, Stacey BGarofano, LucianoGastier-Foster, Julie MGehlenborg, NilsGerken, MarkGetz, GadGiannini, CaterinaGibson, William JHadjipanayis, AngelaHayes, D NeilHeiman, David IHermes, BethHilty, JoeHoadley, Katherine AHoyle, Alan PHuang, Mei
Source
Cell. 164(3)
Subject
Biological Sciences
Biomedical and Clinical Sciences
Bioinformatics and Computational Biology
Genetics
Oncology and Carcinogenesis
Orphan Drug
Brain Cancer
Brain Disorders
Biotechnology
Human Genome
Rare Diseases
Neurosciences
Cancer
Adult
Brain Neoplasms
Cell Proliferation
Cluster Analysis
DNA Helicases
DNA Methylation
Epigenesis
Genetic
Glioma
Humans
Isocitrate Dehydrogenase
Middle Aged
Mutation
Nuclear Proteins
Promoter Regions
Genetic
Signal Transduction
Telomerase
Telomere
Transcriptome
X-linked Nuclear Protein
TCGA Research Network
Medical and Health Sciences
Developmental Biology
Biological sciences
Biomedical and clinical sciences
Language
Abstract
Therapy development for adult diffuse glioma is hindered by incomplete knowledge of somatic glioma driving alterations and suboptimal disease classification. We defined the complete set of genes associated with 1,122 diffuse grade II-III-IV gliomas from The Cancer Genome Atlas and used molecular profiles to improve disease classification, identify molecular correlations, and provide insights into the progression from low- to high-grade disease. Whole-genome sequencing data analysis determined that ATRX but not TERT promoter mutations are associated with increased telomere length. Recent advances in glioma classification based on IDH mutation and 1p/19q co-deletion status were recapitulated through analysis of DNA methylation profiles, which identified clinically relevant molecular subsets. A subtype of IDH mutant glioma was associated with DNA demethylation and poor outcome; a group of IDH-wild-type diffuse glioma showed molecular similarity to pilocytic astrocytoma and relatively favorable survival. Understanding of cohesive disease groups may aid improved clinical outcomes.