학술논문

Comprehensive genomic characterization defines human glioblastoma genes and core pathways
Document Type
article
Author
McLendon, RogerFriedman, AllanBigner, DarrellVan Meir, Erwin GBrat, Daniel JM. Mastrogianakis, GenaOlson, Jeffrey JMikkelsen, TomLehman, NormanAldape, KenAlfred Yung, WKBogler, OliverVandenBerg, ScottBerger, MitchelPrados, MichaelMuzny, DonnaMorgan, MargaretScherer, SteveSabo, AnikoNazareth, LynnLewis, LoraHall, OtisZhu, YimingRen, YanruAlvi, OmarYao, JiqiangHawes, AliciaJhangiani, ShaliniFowler, GeraldSan Lucas, AnthonyKovar, ChristieCree, AndrewDinh, HuyenSantibanez, JirehJoshi, VanditaGonzalez-Garay, Manuel LMiller, Christopher AMilosavljevic, AleksandarDonehower, LarryWheeler, David AGibbs, Richard ACibulskis, KristianSougnez, CarrieFennell, TimMahan, ScottWilkinson, JaneZiaugra, LiudaOnofrio, RobertBloom, TobyNicol, RobArdlie, KristinBaldwin, JenniferGabriel, StaceyLander, Eric SDing, LiFulton, Robert SMcLellan, Michael DWallis, JohnLarson, David EShi, XiaoqiAbbott, RachelFulton, LucindaChen, KenKoboldt, Daniel CWendl, Michael CMeyer, RickTang, YuzhuLin, LingOsborne, John RDunford-Shore, Brian HMiner, Tracie LDelehaunty, KimMarkovic, ChrisSwift, GaryCourtney, WilliamPohl, CraigAbbott, ScottHawkins, AmyLeong, ShinHaipek, CarrieSchmidt, HeatherWiechert, MaddyVickery, TammiScott, SachaDooling, David JChinwalla, AsifWeinstock, George MMardis, Elaine RWilson, Richard KGetz, GadWinckler, WendyVerhaak, Roel GWLawrence, Michael SO’Kelly, MichaelRobinson, JimAlexe, GabrieleBeroukhim, RameenCarter, ScottChiang, DerekGould, Josh
Source
Nature. 455(7216)
Subject
Cancer
Human Genome
Genetic Testing
Brain Cancer
Genetics
Brain Disorders
Biotechnology
Rare Diseases
Aetiology
2.1 Biological and endogenous factors
Adolescent
Adult
Aged
Aged
80 and over
Brain Neoplasms
DNA Methylation
DNA Modification Methylases
DNA Repair
DNA Repair Enzymes
Female
Gene Dosage
Gene Expression Regulation
Neoplastic
Genes
Tumor Suppressor
Genes
erbB-1
Genome
Human
Genomics
Glioblastoma
Humans
Male
Middle Aged
Models
Molecular
Mutation
Neurofibromin 1
Phosphatidylinositol 3-Kinases
Protein Structure
Tertiary
Retrospective Studies
Signal Transduction
Tumor Suppressor Proteins
Cancer Genome Atlas Research Network
General Science & Technology
Language
Abstract
Human cancer cells typically harbour multiple chromosomal aberrations, nucleotide substitutions and epigenetic modifications that drive malignant transformation. The Cancer Genome Atlas (TCGA) pilot project aims to assess the value of large-scale multi-dimensional analysis of these molecular characteristics in human cancer and to provide the data rapidly to the research community. Here we report the interim integrative analysis of DNA copy number, gene expression and DNA methylation aberrations in 206 glioblastomas--the most common type of adult brain cancer--and nucleotide sequence aberrations in 91 of the 206 glioblastomas. This analysis provides new insights into the roles of ERBB2, NF1 and TP53, uncovers frequent mutations of the phosphatidylinositol-3-OH kinase regulatory subunit gene PIK3R1, and provides a network view of the pathways altered in the development of glioblastoma. Furthermore, integration of mutation, DNA methylation and clinical treatment data reveals a link between MGMT promoter methylation and a hypermutator phenotype consequent to mismatch repair deficiency in treated glioblastomas, an observation with potential clinical implications. Together, these findings establish the feasibility and power of TCGA, demonstrating that it can rapidly expand knowledge of the molecular basis of cancer.