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Volumn 21, Issue 20, 2002, Pages 3207-3212
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Human p14arf-mediated cell cycle arrest strictly depends on intact p53 signaling pathways
a,b a,c a a |
Author keywords
14 3 3 ; DNA tumor virus; INK4a ARF; p21; p53
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Indexed keywords
CYCLIN DEPENDENT KINASE INHIBITOR;
PROTEIN P14;
PROTEIN P21;
PROTEIN P53;
ANIMAL CELL;
APOPTOSIS;
ARTICLE;
CELL CYCLE;
CELL CYCLE G1 PHASE;
CELL CYCLE G2 PHASE;
CELL TYPE;
COLON CARCINOMA;
CONTROLLED STUDY;
GENE ISOLATION;
GENE LOCUS;
GENETIC TRANSCRIPTION;
HUMAN;
HUMAN CELL;
INK4A ARF GENE;
MITOSIS INHIBITION;
NONHUMAN;
OPEN READING FRAME;
PRIORITY JOURNAL;
PROTEIN BINDING;
PROTEIN DEGRADATION;
SIGNAL TRANSDUCTION;
TUMOR SUPPRESSOR GENE;
WILD TYPE;
CELL CYCLE;
CELL CYCLE PROTEINS;
CELL LINE;
CYCLIN-DEPENDENT KINASE INHIBITOR P27;
ECDYSONE;
EXONUCLEASES;
G1 PHASE;
G2 PHASE;
GENE EXPRESSION REGULATION;
GENE TARGETING;
GENES, P53;
HUMANS;
KIDNEY;
NEOPLASM PROTEINS;
PROTEINS;
RECEPTORS, STEROID;
RECOMBINANT FUSION PROTEINS;
SIGNAL TRANSDUCTION;
SPECIES SPECIFICITY;
TRANSFECTION;
TUMOR MARKERS, BIOLOGICAL;
TUMOR SUPPRESSOR PROTEIN P14ARF;
TUMOR SUPPRESSOR PROTEIN P53;
TUMOR SUPPRESSOR PROTEINS;
ADENOVIRIDAE;
ANIMALIA;
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EID: 85047700405
PISSN: 09509232
EISSN: None
Source Type: Journal
DOI: 10.1038/sj.onc.1205429 Document Type: Article |
Times cited : (61)
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References (42)
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