2020
Mutations and Copy Number Alterations in IDH Wild-Type Glioblastomas Are Shaped by Different Oncogenic Mechanisms
Ülgen E, Karacan S, Gerlevik U, Can Ö, Bilguvar K, Oktay Y, Akyerli C, Yüksel Ş, Danyeli A, Tihan T, Sezerman OU, Yakıcıer MC, Pamir MN, Özduman K. Mutations and Copy Number Alterations in IDH Wild-Type Glioblastomas Are Shaped by Different Oncogenic Mechanisms. Biomedicines 2020, 8: 574. PMID: 33297360, PMCID: PMC7762325, DOI: 10.3390/biomedicines8120574.Peer-Reviewed Original ResearchUnderlying oncogenic mechanismsOncogenic mechanismsNumber alterationsDifferent oncogenic mechanismsDiffuse midline gliomaMismatch repair deficiencySingle nucleotide variationsWhole-exome sequencingIDH wild-type glioblastomaWild-type glioblastomaPrimary tumorMolecular subsetsBlood samplesMidline gliomaAdult diffuse gliomasHeterogenous groupWt glioblastomaCopy number alterationsGliomasRecurrenceExome sequencingDiffuse gliomasRepair deficiencyAlteration frequencyGenomic alterations
2019
Whole exome sequencing-based analysis to identify DNA damage repair deficiency as a major contributor to gliomagenesis in adult diffuse gliomas.
Ülgen E, Can Ö, Bilguvar K, Oktay Y, Akyerli CB, Danyeli AE, Yakıcıer MC, Sezerman OU, Pamir MN, Özduman K. Whole exome sequencing-based analysis to identify DNA damage repair deficiency as a major contributor to gliomagenesis in adult diffuse gliomas. Journal Of Neurosurgery 2019, 132: 1435-1446. PMID: 30952131, DOI: 10.3171/2019.1.jns182938.Peer-Reviewed Original ResearchDNA damage repair deficiencyDiffuse gliomasAdult diffuse gliomasMutational signaturesRepair deficiencyMicrosatellite instability statusSignature 1Mutational loadDDR gene mutationsDDR genesHigh mutational loadCancer Genome AtlasMolecular subsetsBlood samplesMSI statusSomatic mutational signaturesInstability statusSignificant associationLarger studyGlioma developmentTumorsGene mutationsGenome AtlasSignature 3TCGA data
2018
Glioma through the looking GLASS: molecular evolution of diffuse gliomas and the Glioma Longitudinal Analysis Consortium
Aldape K, Amin SB, Ashley DM, Barnholtz-Sloan JS, Bates AJ, Beroukhim R, Bock C, Brat DJ, Claus EB, Costello JF, de Groot JF, Finocchiaro G, French PJ, Gan HK, Griffith B, Herold-Mende CC, Horbinski C, Iavarone A, Kalkanis SN, Karabatsou K, Kim H, Kouwenhoven MCM, McDonald KL, Miletic H, Nam DH, Ng HK, Niclou SP, Noushmehr H, Ormond D, Poisson LM, Reifenberger G, Roncaroli F, K J, Smitt P, Smits M, Souza CF, Tabatabai G, Van Meir EG, Verhaak RGW, Watts C, Wesseling P, Woehrer A, Yung WKA, Jungk C, Hau AC, van Dyck E, Westerman BA, Yin J, Abiola O, Zeps N, Grimmond S, Buckland M, Khasraw M, Sulman EP, Muscat AM, Stead L. Glioma through the looking GLASS: molecular evolution of diffuse gliomas and the Glioma Longitudinal Analysis Consortium. Neuro-Oncology 2018, 20: 873-884. PMID: 29432615, PMCID: PMC6280138, DOI: 10.1093/neuonc/noy020.Peer-Reviewed Original ResearchConceptsGlioma Longitudinal Analysis ConsortiumMolecular evolutionAnalysis ConsortiumEvolution of gliomasLethal phenotypeCancer Genome AtlasEpigenetic abnormalitiesTargetable vulnerabilitiesGenome AtlasSomatic alterationsDiverse groupCurrent knowledgeAdult diffuse gliomasComprehensive understandingDiffuse gliomasKnowledge gapsEssential insightsEvolutionMolecular subtypesConsortiumPhenotype
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