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Accès ouvert déclaré 2014 article

Comprehensive molecular characterization of urothelial bladder carcinoma

3105Citations signalées, ce qui n’est pas une note de qualité
63Institutions déclarées
4Pays d’affiliation déclarés

Rattachement africain : us, ca, vn, it. Niveau de preuve : code pays fourni par la source.

Le résumé fourni par la source

Urothelial carcinoma of the bladder is a common malignancy that causes approximately 150,000 deaths per year worldwide. So far, no molecularly targeted agents have been approved for treatment of the disease. As part of The Cancer Genome Atlas project, we report here an integrated analysis of 131 urothelial carcinomas to provide a comprehensive landscape of molecular alterations. There were statistically significant recurrent mutations in 32 genes, including multiple genes involved in cell-cycle regulation, chromatin regulation, and kinase signalling pathways, as well as 9 genes not previously reported as significantly mutated in any cancer. RNA sequencing revealed four expression subtypes, two of which (papillary-like and basal/squamous-like) were also evident in microRNA sequencing and protein data. Whole-genome and RNA sequencing identified recurrent in-frame activating FGFR3–TACC3 fusions and expression or integration of several viruses (including HPV16) that are associated with gene inactivation. Our analyses identified potential therapeutic targets in 69% of the tumours, including 42% with targets in the phosphatidylinositol-3-OH kinase/AKT/mTOR pathway and 45% with targets (including ERBB2) in the RTK/MAPK pathway. Chromatin regulatory genes were more frequently mutated in urothelial carcinoma than in any other common cancer studied so far, indicating the future possibility of targeted therapy for chromatin abnormalities. This paper reports integrative molecular analyses of urothelial bladder carcinoma at the DNA, RNA, and protein levels performed as part of The Cancer Genome Atlas project; recurrent mutations were found in 32 genes, including those involved in cell-cycle regulation, chromatin regulation and kinase signalling pathways; chromatin regulatory genes were more frequently mutated in urothelial carcinoma than in any other common cancer studied so far. This study of 131 high-grade muscle-invasive urothelial bladder carcinomas, part of The Cancer Genome Atlas (TCGA) project, reports recurrent mutations in 32 genes, including those involved in cell-cycle regulation, chromatin regulation and kinase signalling pathways. Chromatin regulatory genes were more frequently mutated in urothelial carcinoma than in any common cancer studied to date. Recurrent in-frame activating FGFR3–TACC3 fusions and expression or integration of viruses associated with gene inactivation are also identified. Importantly, potential therapeutic targets are identified in 69% of the tumours.

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Comprehensive molecular characterization of urothelial bladder carcinoma
Date Crossref
29/01/2014
Éditeur
Springer Science and Business Media LLC
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

Les institutions déclarées

The University of Texas MD Anderson Cancer CenterBaylor College of MedicineHarvard University PressMemorial Sloan Kettering Cancer CenterNational Cancer InstituteChildren's Cancer CenterOregon Health & Science UniversityCornell UniversityNational Institutes of HealthUniversity of Southern CaliforniaBroad InstituteBrigham and Women's HospitalHarvard UniversityEli and Edythe Broad FoundationUniversity of California San DiegoUniversity of North Carolina at Chapel HillDana-Farber Cancer InstituteJohns Hopkins UniversityUniversity of British ColumbiaMassachusetts General HospitalCenter for Cancer ResearchSouthwestern Medical CenterThe University of Texas Southwestern Medical CenterNational Institute of Environmental Health SciencesOptimum Therapeutics (United States)Sylvester Comprehensive Cancer CenterSidney Kimmel Comprehensive Cancer CenterCanada's Michael Smith Genome Sciences CentreBoston Children's HospitalCenter for Systems BiologyBuck Institute for Research on AgingUniversity of California, Santa CruzInstitute for Systems BiologyUniversity of California, San FranciscoNationwide Children's HospitalMarin Community FoundationThe Ohio State UniversityUCSF Helen Diller Family Comprehensive Cancer CenterCleveland ClinicAugusta University HealthChristiana Care Health SystemAnalytical Biological Services (United States)Cleveland FoundationAugusta UniversityGeorgia Regents Medical CenterTranslational Genomics Research InstituteWashington CollegeHue Central HospitalIndiana University BloomingtonLahey Hospital and Medical CenterIndiana University – Purdue University IndianapolisLahey Medical CenterUniversity of PittsburghRoswell Park Comprehensive Cancer CenterUniversity of ChicagoSt. Joseph’s Healthcare HamiltonUniversity of MiamiStanford UniversitySRA International (United States)FIT Consulting (Italy)Human Genome Sciences (United States)National Human Genome Research InstituteGeorgia Institute of Technology

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Les sujets associés

Bladder and Urothelial Cancer TreatmentsEpigenetics and DNA MethylationFerroptosis and cancer prognosis

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