Regulation of the p53 transcriptional response by structurally diverse core promoters

被引:75
作者
Morachis, Jose M. [1 ]
Murawsky, Christopher M. [1 ]
Emerson, Beverly M. [1 ]
机构
[1] Salk Inst Biol Studies, Regulatory Biol Lab, La Jolla, CA 92037 USA
关键词
p53; RNA polymerase II; transcription; core promoters; p21; Fas/APO1; NF-Y; RNA-POLYMERASE-II; NF-Y; TATA-BOX; CCAAT-BINDING; IN-VIVO; CDK2-DEPENDENT PHOSPHORYLATION; GENE-EXPRESSION; RECRUITMENT; INITIATION; COMPLEX;
D O I
10.1101/gad.1856710
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
p53 target promoters are structurally diverse and display pronounced differences in RNA polymerase II (RNAP II) occupancy even in unstressed cells, with higher levels observed on cell cycle arrest genes (p21) compared with apoptotic genes (Fas/APO1). This occupancy correlates well with their ability to undergo rapid or delayed stress induction. To understand the basis for such distinct temporal assembly of transcription complexes, we examined the role of core promoter structures in this process. We find that the p21 core promoter directs rapid, TATA box-dependent assembly of RNAP II preinitiation complexes (PICs), but permits few rounds of RNAP II reinitiation. In contrast, PIC formation at the Fas/APO1 core promoter is very inefficient but supports multiple rounds of transcription. We define a downstream element within the Fas/APO1 core promoter that is essential for its activation, and identify nuclear transcription factor Y (NF-Y) as its binding partner. NF-Y acts as a bifunctional transcription factor that regulates basal expression of Fas/APO1 in vivo. Thus, two critical parameters of the stress-induced p53 transcriptional response are the kinetics of gene induction and duration of expression through frequent reinitiation. These features are intrinsic, DNA-encoded properties of diverse core promoters that may be fundamental to anticipatory programming of p53 response genes upon stress.
引用
收藏
页码:135 / 147
页数:13
相关论文
共 54 条
[1]   p21 in cancer: intricate networks and multiple activities [J].
Abbas, Tarek ;
Dutta, Anindya .
NATURE REVIEWS CANCER, 2009, 9 (06) :400-414
[2]   Ordered cooperative functions of PRMT1, p300, and CARM1 in transcriptional activation by p53 [J].
An, W ;
Kim, J ;
Roeder, RG .
CELL, 2004, 117 (06) :735-748
[3]   STRUCTURE OF THE HUMAN APO-1 GENE [J].
BEHRMANN, I ;
WALCZAK, H ;
KRAMMER, PH .
EUROPEAN JOURNAL OF IMMUNOLOGY, 1994, 24 (12) :3057-3062
[4]   CCAAT binding NF-Y-YBP interactions: NF-YB and NF-YC require short domains adjacent to their histone fold motifs for association with TBP basic residues [J].
Bellorini, M ;
Lee, DK ;
Dantonel, JC ;
Zemzoumi, K ;
Roeder, RG ;
Tora, L ;
Mantovani, R .
NUCLEIC ACIDS RESEARCH, 1997, 25 (11) :2174-2181
[5]   A balance between NF-Y and p53 governs the pro- and anti-apoptotic transcriptional response [J].
Benatti, Paolo ;
Basile, Valentina ;
Merico, Daniele ;
Fantoni, Luca Isaia ;
Tagliafico, Enrico ;
Imbriano, Carol .
NUCLEIC ACIDS RESEARCH, 2008, 36 (05) :1415-1428
[6]   Drosophila TFIID binds to a conserved downstream basal promoter element that is present in many TATA-box-deficient promoters [J].
Burke, TW ;
Kadonaga, JT .
GENES & DEVELOPMENT, 1996, 10 (06) :711-724
[7]  
CAI H, 1987, J BIOL CHEM, V262, P298
[8]   Dynamic recruitment of NF-Y and histone acetyltransferases on cell-cycle promoters [J].
Caretti, G ;
Salsi, V ;
Vecchi, C ;
Imbriano, C ;
Mantovani, R .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (33) :30435-30440
[9]   Cdk2-dependent phosphorylation of the NF-Y transcription factor is essential for the expression of the cell cycle-regulatory genes and cell cycle G1/S and G2/M transitions [J].
Chae, HD ;
Yun, J ;
Bang, YJ ;
Shin, DY .
ONCOGENE, 2004, 23 (23) :4084-4088
[10]  
CHENG JH, 1995, J IMMUNOL, V154, P1239