Retinoblastoma protein interacts with ATF2 and JNK/p38 in stimulating the transforming growth factor-β2 promoter

被引:11
|
作者
Li, H [1 ]
Wicks, WD [1 ]
机构
[1] Univ Tennessee, Dept Biochem Cellular & Mol Biol, Knoxville, TN 37996 USA
关键词
ATF2; retinoblastoma protein; JNK; p38; protein-protein interaction; phosphorylation;
D O I
10.1006/abbi.2001.2518
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
Two highly related transcription factors, ATF2 and ATFa, enhance the activity of the Transforming Growth Factor beta2 (TGF-beta2) promoter via a partial cAMP response element in transfected CHO cells. The retinoblastoma protein (Rb) also activates this promoter and enhances the stimulatory effects of ATF2 but causes near extinction of the effects of ATFa. The site on Rb required for its effects alone and in combination with the ATFs has been mapped mainly to the A/B pockets but the C pocket is also implicated. Whereas MKK7 or JNK expression enhances the actions of both ATFs, MKK6 or p38 expression only augments the effects of ATF2. Immunoprecipitation with Rb antibodies of lysates from transfected cells brings down expressed ATF2 but not ATFa. Expressed JNK and p38 are also found in the anti-Rb immunoprecipitates. ATF2 antibodies bring down expressed Rb, JNK and p38 and expression of Rb enhances the immunoprecipitation of both JNK and p38 by ATF2 antibodies. The results suggest that Rb is acting as a matchmaker by bridging either JNK or p38 with their common substrate ATF2 and, hence, facilitating its activation. Consistent with this suggestion, expression of Rb enhances the phosphorylation of ATF2 in CHO cells. (C) 2001 Academic Press.
引用
收藏
页码:1 / 12
页数:12
相关论文
共 50 条
  • [11] Adiponectin decreases lipids deposition by p38 MAPK/ATF2 signaling pathway in muscle of broilers
    Jun Yan
    Lu Gan
    Renli Qi
    Chao Sun
    Molecular Biology Reports, 2013, 40 : 7017 - 7025
  • [12] Involvement of the p38 mitogen-activated protein kinase pathway in transforming growth factor-β-induced gene expression
    Hanafusa, H
    Ninomiya-Tsuji, J
    Masuyama, N
    Nishita, M
    Fujisawa, J
    Shibuya, H
    Matsumoto, K
    Nishida, E
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (38) : 27161 - 27167
  • [13] TRANSFORMING GROWTH FACTOR-β/P38 MAP KINASE SIGNALING CONTRIBUTES TO SORAFENIB RESISTANCE IN HEPATOMA
    Matsuda, Y.
    Wakai, T.
    Shirai, Y.
    Yano, M.
    Ohkoshi, S.
    Aoyagi, Y.
    Fujimaki, S.
    Sanpei, A.
    Hirano, S.
    JOURNAL OF HEPATOLOGY, 2011, 54 : S272 - S273
  • [14] Activating transcription factor-2 (ATF2) mediates MMP-2 transcriptional activation induced by p38 MAPK in breast epithelial cells
    Moon, A
    Song, H
    FASEB JOURNAL, 2006, 20 (05): : A1098 - A1098
  • [16] Transforming growth factor-β stabilizes elastin mRNA by a pathway requiring active smads, protein kinase C-δ, and p38
    Kucich, U
    Rosenbloom, JC
    Abrams, WR
    Rosenbloom, J
    AMERICAN JOURNAL OF RESPIRATORY CELL AND MOLECULAR BIOLOGY, 2002, 26 (02) : 183 - 188
  • [17] Transforming growth factor-β controls human osteoclastogenesis through the p38 MAPK and regulation of RANK expression
    Karsdal, MA
    Hjorth, P
    Henriksen, K
    Kirkegaard, T
    Nielsen, KL
    Lou, H
    Delaissé, JM
    Foged, NT
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (45) : 44975 - 44987
  • [18] Investigating the Autoactivation of p38α Mitogen-Activated Protein Kinase Mediated by Transforming Growth Factor-β-Activated Protein Kinase Binding Protein 1
    De Nicola, Gian Felice
    Martin, E. D.
    Bassi, Rekha
    Verma, Sharwari
    Conte, Maria
    Marber, Michael S.
    CIRCULATION RESEARCH, 2012, 111 (04)
  • [19] Both the Smad and p38 MAPK pathways play a crucial role in Runx2 expression following induction by transforming growth factor-β and bone morphogenetic protein
    Kyeong-Sook Lee
    Seung-Hyun Hong
    Suk-Chul Bae
    Oncogene, 2002, 21 : 7156 - 7163
  • [20] Both the Smad and p38 MAPK pathways play a crucial role in Runx2 expression following induction by transforming growth factor-β and bone morphogenetic protein
    Lee, KS
    Hong, SH
    Bae, SC
    ONCOGENE, 2002, 21 (47) : 7156 - 7163