Interferon regulatory factor 1 binding to p300 stimulates DNA-dependent acetylation of p53

被引:64
作者
Dornan, D
Eckert, M
Wallace, M
Shimizu, H
Ramsay, E
Hupp, TR
Ball, KL
机构
[1] Univ Edinburgh, Western Gen Hosp, Ctr Canc Res, Cell Signalling Unit,CRUK Interferon & Cell Signa, Edinburgh EH4 2XR, Midlothian, Scotland
[2] Univ Edinburgh, Western Gen Hosp, Ctr Canc Res, Cell Signalling Unit,CRUK P53 Signal Transduct Gr, Edinburgh EH4 2XR, Midlothian, Scotland
关键词
D O I
10.1128/MCB.24.22.10083-10098.2004
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Interferon regulatory factor 1 (IRF-1) and p53 control distinct sets of downstream genes; however, these two antioncogenic transcription factors converge to regulate p21 gene expression and to inhibit tumor formation. Here we investigate the mechanism by which IRF-1 and p53 synergize at the p21 promoter and show that stimulation of p21 transcription by IRF-1 does not require its DNA-binding activity but relies on the ability of IRF-1 to bind the coactivator p300 and to stimulate p53-dependent transcription by an allosteric mechanism. Deletion of the p300-binding sites in IRF-1 eliminates the ability of IRF-1 to stimulate p53 acetylation and associated p53 activity. Complementing this, small peptides derived from the IRF-1-p300 interface can bind to p300, stabilize the binding of p300 to DNA-bound p53, stimulate p53 acetylation in trans, and up-regulate p53-dependent activity from the p21 promoter. The nonacetylatable p53 mutant (p53-6KR) cannot be stimulated by IRF-1, further suggesting that p53 acetylation is the mechanism whereby IRF-1 modifies p53 activity. These data expand the core p300-p53 protein LXXLL and PXXP interface by including an IRF-1-p300 interface as an allosteric modifier of DNA-dependent acetylation of p53 at the p21 promoter.
引用
收藏
页码:10083 / 10098
页数:16
相关论文
共 40 条
[31]   A novel cofactor for p300 that regulates the p53 response [J].
Shikama, N ;
Lee, CW ;
France, S ;
Delavaine, L ;
Lyon, J ;
Krstic-Demonacos, M ;
La Thangue, NB .
MOLECULAR CELL, 1999, 4 (03) :365-376
[32]   MULTIPLE PROLACTIN-RESPONSIVE ELEMENTS MEDIATE G1 AND S-PHASE EXPRESSION OF THE INTERFERON REGULATORY FACTOR-I GENE [J].
STEVENS, AM ;
YULEE, LY .
MOLECULAR ENDOCRINOLOGY, 1994, 8 (03) :345-355
[33]  
Tamura G, 1996, CANCER RES, V56, P612
[34]   AN IRF-1-DEPENDENT PATHWAY OF DNA DAMAGE-INDUCED APOPTOSIS IN MITOGEN-ACTIVATED T-LYMPHOCYTES [J].
TAMURA, T ;
ISHIHARA, M ;
LAMPHIER, MS ;
TANAKA, N ;
OISHI, I ;
AIZAWA, S ;
MATSUYAMA, T ;
MAK, TW ;
TAKI, S ;
TANIGUCHI, T .
NATURE, 1995, 376 (6541) :596-599
[35]   Cooperation of the tumour suppressors IRF-1 and p53 in response to DNA damage [J].
Tanaka, N ;
Ishihara, M ;
Lamphier, MS ;
Nozawa, H ;
Matsuyama, T ;
Mak, TW ;
Aizawa, S ;
Tokino, T ;
Oren, M ;
Taniguchi, T .
NATURE, 1996, 382 (6594) :816-818
[36]   CELLULAR COMMITMENT TO ONCOGENE-INDUCED TRANSFORMATION OR APOPTOSIS IS DEPENDENT ON THE TRANSCRIPTION FACTOR IRF-1 [J].
TANAKA, N ;
ISHIHARA, M ;
KITAGAWA, M ;
HARADA, H ;
KIMURA, T ;
MATSUYAMA, T ;
LAMPHIER, MS ;
AIZAWA, S ;
MAK, TW ;
TANIGUCHI, T .
CELL, 1994, 77 (06) :829-839
[37]   The interferon-α/β system in antiviral responses:: a multimodal machinery of gene regulation by the IRF family of transcription factors [J].
Taniguchi, T ;
Takaoka, A .
CURRENT OPINION IN IMMUNOLOGY, 2002, 14 (01) :111-116
[38]   The evolution of diverse biological responses to DNA damage: insights from yeast and p53 [J].
Wahl, GM ;
Carr, AM .
NATURE CELL BIOLOGY, 2001, 3 (12) :E277-E286
[39]   DELETION OF IRF-1, MAPPING TO CHROMOSOME 5Q31.1 IN HUMAN LEUKEMIA AND PRELEUKEMIC MYELODYSPLASIA [J].
WILLMAN, CL ;
SEVER, CE ;
PALLAVICINI, MG ;
HARADA, H ;
TANAKA, N ;
SLOVAK, ML ;
YAMAMOTO, H ;
HARADA, K ;
MEEKER, TC ;
LIST, AF ;
TANIGUCHI, T .
SCIENCE, 1993, 259 (5097) :968-971
[40]   Role for p300 in stabilization of p53 in the response to DNA damage [J].
Yuan, ZM ;
Huang, YY ;
Ishiko, T ;
Nakada, S ;
Utsugisawa, T ;
Shioya, H ;
Utsugisawa, Y ;
Yokoyama, K ;
Weichselbaum, R ;
Shi, Y ;
Kufe, D .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (04) :1883-1886