Identification of BTG2, an antiproliferative p53-dependent component of the DNA damage cellular response pathway

被引:372
作者
Rouault, JP
Falette, N
Guehenneux, F
Guillot, C
Rimokh, R
Wang, Q
Berthet, C
MoyretLalle, C
Savatier, P
Pain, B
Shaw, P
Berger, R
Samarut, J
Magaud, JP
Ozturk, M
Samarut, C
Puisieux, A
机构
[1] CTR LEON BERARD,INSERM U453,CNRS,F-69373 LYON 08,FRANCE
[2] HOP EDOUARD HERRIOT,LAB CYTOGENET MOL,F-69437 LYON 03,FRANCE
[3] ECOLE NORMALE SUPER LYON,LAB BIOL MOL & CELLULAIRE,CNRS UMR49,INRA,F-69373 LYON 08,FRANCE
[4] INST PATHOL,DIV EXPT ONCOL,CH-1011 LAUSANNE,SWITZERLAND
[5] INST GENET MOL,INSERM,U301,F-75010 PARIS,FRANCE
[6] BILKENT UNIV,DEPT MOL BIOL & GENET,TR-06533 BILKENT,ANKARA,TURKEY
关键词
D O I
10.1038/ng1296-482
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Cell cycle regulation is critical for maintenance of genome integrity. A prominent factor that guarantees genomic stability of cells is p53 (ref. 1). The P53 gene encodes a transcription factor that has a role as a tumour suppressor(2). identification of p53-target genes should provide greater insight into the molecular mechanisms that mediate the tumour suppressor activities of p53. The rodent Pc3/Tis21 gene was initially described as an immediate early gene induced by tumour promoters and growth factors in PC12 and Swiss 3T3 cells(3,4). It is expressed in a variety of cell and tissue types and encodes a remarkably labile protein(4,5). Pc3/Tis21 has a strong sequence similarity to the human antiproliferative BTG1 gene cloned from a chromosomal translocation of a B-cell chronic lymphocytic leukaemia(6). This similarity led us to speculate that BTG1 and the putative human homologue of Pc3/Tis21 (named BTG2) were members of a new family of genes involved in growth control and/or differentiation. This hypothesis was recently strengthened by the identification of a new antiproliferative protein, named TOE, which shares sequence similarity with BTG1 and PC3/TIS21 (ref. 7). Here, we cloned and localized the human BTG2 gene. We show that BTG2 expression is induced through a p53-dependent mechanism and that BTG2 function may be relevant to cell cycle control and cellular response to DNA damage.
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收藏
页码:482 / 486
页数:5
相关论文
共 44 条
[31]   RETINOBLASTOMA AND P53-TUMOR SUPPRESSOR GENES IN HUMAN HEPATOMA-CELL LINES [J].
PUISIEUX, A ;
GALVIN, K ;
TROALEN, F ;
BRESSAC, B ;
MARCAIS, C ;
GALUN, E ;
PONCHEL, F ;
YAKICIER, C ;
JI, JW ;
OZTURK, M .
FASEB JOURNAL, 1993, 7 (14) :1407-1413
[32]  
RAO PN, 1979, EFFECTS DRUGS CELL N, P475
[33]   TRANSCRIPTIONAL ACTIVATION BY WILD-TYPE BUT NOT TRANSFORMING MUTANTS OF THE P53 ANTIONCOGENE [J].
RAYCROFT, L ;
WU, H ;
LOZANO, G .
SCIENCE, 1990, 249 (4972) :1049-1051
[34]   BTG1, A MEMBER OF A NEW FAMILY OF ANTIPROLIFERATIVE GENES [J].
ROUAULT, JP ;
RIMOKH, R ;
TESSA, C ;
PARANHOS, G ;
FFRENCH, M ;
DURET, L ;
GAROCCIO, M ;
GERMAIN, D ;
SAMARUT, J ;
MAGAUD, JP .
EMBO JOURNAL, 1992, 11 (04) :1663-1670
[35]  
SAVATIER P, 1994, ONCOGENE, V9, P809
[36]   INDUCTION OF APOPTOSIS BY WILD-TYPE P53 IN A HUMAN COLON TUMOR-DERIVED CELL-LINE [J].
SHAW, P ;
BOVEY, R ;
TARDY, S ;
SAHLI, R ;
SORDAT, B ;
COSTA, J .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1992, 89 (10) :4495-4499
[37]  
STEWART N, 1995, ONCOGENE, V10, P109
[38]   PROTEIN-SYNTHESIS DEPENDENT CYTOPLASMIC TRANSLOCATION OF P53 PROTEIN AFTER SERUM STIMULATION OF GROWTH-ARRESTED MCF-7 CELLS [J].
TAKAHASHI, K ;
SUMIMOTO, H ;
SUZUKI, K ;
ONO, T .
MOLECULAR CARCINOGENESIS, 1993, 8 (01) :58-66
[39]   SYNTHESIS, DEGRADATION, AND SUBCELLULAR-LOCALIZATION OF PROTEINS ENCODED BY THE PRIMARY RESPONSE GENES TIS7/PC4 AND TIS21/PC3 [J].
VARNUM, BC ;
REDDY, ST ;
KOSKI, RA ;
HERSCHMAN, HR .
JOURNAL OF CELLULAR PHYSIOLOGY, 1994, 158 (01) :205-213
[40]   INTRODUCTION OF WILD-TYPE P53 IN A HUMAN OVARIAN-CANCER CELL-LINE NOT EXPRESSING ENDOGENOUS P53 [J].
VIKHANSKAYA, F ;
ERBA, E ;
DINCALCI, M ;
BROGGINI, M .
NUCLEIC ACIDS RESEARCH, 1994, 22 (06) :1012-1017