Deletion of the p16 and p15 Genes in Human Bladder Tumors
about
Isolation and characterization of the TERE1 gene, a gene down-regulated in transitional cell carcinoma of the bladderA methylthioadenosine phosphorylase (MTAP) fusion transcript identifies a new gene on chromosome 9p21 that is frequently deleted in cancerMolecular genesis of non-muscle-invasive urothelial carcinoma (NMIUC)The genetics of transitional cell carcinoma: progress and potential clinical application.Superimposed histologic and genetic mapping of chromosome 9 in progression of human urinary bladder neoplasia: implications for a genetic model of multistep urothelial carcinogenesis and early detection of urinary bladder cancer.Discovery of structural alterations in solid tumor oligodendroglioma by single molecule analysis.Molecular subtypes of bladder cancer: Jekyll and Hyde or chalk and cheese?Establishment and characterisation of six human biliary tract cancer cell lines.Bladder cancer subtypes defined by genomic alterations.p16 (INK4a) has clinicopathological and prognostic impact on oropharynx and larynx squamous cell carcinoma.Lessons from a decade of integrating cancer copy number alterations with gene expression profiles.Impaired Delta Np63 expression associates with reduced beta-catenin and aggressive phenotypes of urothelial neoplasmsMolecular genetic analysis of chromosome 9 candidate tumor-suppressor loci in bladder cancer cell lines.Bladder tumour-derived somatic TSC1 missense mutations cause loss of function via distinct mechanisms.Molecular analyses of the mitotic checkpoint components hsMAD2, hBUB1 and hBUB3 in human cancer.Biological determinants of bladder cancer gene expression subtypes.Establishment and characterization of 12 human colorectal-carcinoma cell lines.The prevalence of loss of heterozygosity in chromosome 3, including FHIT, in bladder cancer, using the fluorescent multiplex polymerase chain reaction.Alterations of INK4A and INK4B genes in adult soft tissue sarcomas: effect on survival.Inverted papilloma of the urinary bladder: a molecular genetic appraisal.Molecular characteristics of urothelial neoplasms in children and young adults: a subset of tumors from young patients harbors chromosomal abnormalities but not FGFR3 or TP53 gene mutations.CDKN2A homozygous deletion is associated with muscle invasion in FGFR3-mutated urothelial bladder carcinoma.Cyclin D1 gene polymorphism is associated with an increased risk of urinary bladder cancer.Prognostic significance of homozygous deletions and multiple duplications at the CDKN2A (p16INK4a)/ARF (p14ARF) locus in urinary bladder cancer.The role of protein p16(INK4a) in glottic laryngeal squamous cell carcinoma.Clinical course of bladder neoplasms and single nucleotide polymorphisms in theCDKN2Agene
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P2860
Deletion of the p16 and p15 Genes in Human Bladder Tumors
description
article
@en
im Oktober 1995 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована в жовтні 1995
@uk
name
Deletion of the p16 and p15 Genes in Human Bladder Tumors
@en
Deletion of the p16 and p15 Genes in Human Bladder Tumors
@nl
type
label
Deletion of the p16 and p15 Genes in Human Bladder Tumors
@en
Deletion of the p16 and p15 Genes in Human Bladder Tumors
@nl
prefLabel
Deletion of the p16 and p15 Genes in Human Bladder Tumors
@en
Deletion of the p16 and p15 Genes in Human Bladder Tumors
@nl
P2093
P50
P356
P1476
Deletion of the p16 and p15 genes in human bladder tumors
@en
P2093
C Cordon-Cardo
G Dalbagni
G J Hannon
I Pellicer
V E Reuter
P304
P356
10.1093/JNCI/87.20.1524
P407
P577
1995-10-01T00:00:00Z