ERM transactivation is up-regulated by the repression of DNA binding after the PKA phosphorylation of a consensus site at the edge of the ETS domain.

被引:30
作者
Baert, JL
Beaudoin, C
Coutte, L
de Launoit, Y
机构
[1] Inst Pasteur, UMR 8526 CNRS, Inst Biol Lille, F-59021 Lille, France
[2] Free Univ Brussels, Fac Med, Mol Virol Lab, B-1070 Brussels, Belgium
关键词
D O I
10.1074/jbc.M107139200
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
The final step of the transduction pathway is the activation of gene transcription, which is driven by kinase cascades leading to changes in the activity of many transcription factors. Among these latter, PEA3/E1AF, ER81/ETV1, and ERM, members of the well conserved PEAS group from the Ets family are involved in these processes. We show here that protein kinase A (PKA) increases the transcriptional activity of human ERM and human ETV1, through a Ser residue situated at the edge of the ETS DNA-binding domain. PKA phosphorylation does not directly affect the ERM transactivation domains but does affect DNA binding activity. Unphosphorylated wild-type ERM bound DNA avidly, whereas after PKA phosphorylation it did so very weakly. Interestingly, S367A mutation significantly reduced the ERM-mediated transcription in the presence of the kinase, and the DNA binding of this mutant, although similar to that of unphosphorylated wild-type protein, was insensitive to PKA treatment. Mutations, which may mimic a phosphorylated serine, converted ERM from an efficient DNA-binding protein to a poor DNA binding one, with inefficiency of PKA phosphorylation. The present data clearly demonstrate a close correlation between the capacity of PKA to increase the transactivation of ERM and the drastic down-regulation of the binding of the ETS domain to the targeted DNA. What we thus demonstrate here is a relatively rare transcription activation mechanism through a decrease in DNA binding, probably by the shift of a non-active form of an Ets protein to a PKA-phosphorylated active one, which should be in a conformation permitting a transactivation domain to be active.
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页码:1002 / 1012
页数:11
相关论文
共 60 条
  • [11] Characterization of the human and mouse ETV1/ER81 transcription factor genes:: role of the two alternatively spliced isoforms in the human
    Coutte, L
    Monté, D
    Imai, K
    Pouilly, L
    Dewitte, F
    Vidaud, M
    Adamski, J
    Baert, JL
    de Launoit, Y
    [J]. ONCOGENE, 1999, 18 (46) : 6278 - 6286
  • [12] Cowley DO, 2000, GENE DEV, V14, P366
  • [13] The ETS family member ERM contains an alpha-helical acidic activation domain that contacts TAFII60
    Defossez, PA
    Baert, JL
    Monnot, M
    deLaunoit, Y
    [J]. NUCLEIC ACIDS RESEARCH, 1997, 25 (22) : 4455 - 4463
  • [14] Structure-function relationships of the PEA3 group of Ets-related transcription factors
    deLaunoit, Y
    Baert, JL
    Chotteau, A
    Monte, D
    Defossez, PA
    Coutte, L
    Pelczar, H
    Leenders, F
    [J]. BIOCHEMICAL AND MOLECULAR MEDICINE, 1997, 61 (02) : 127 - 135
  • [15] Ets transcription factors and human disease
    Dittmer, J
    Nordheim, A
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA-REVIEWS ON CANCER, 1998, 1377 (02): : F1 - F11
  • [16] FISHER RJ, 1994, PROTEIN SCI, V3, P257
  • [17] HIGASHINO F, 1995, ONCOGENE, V10, P1461
  • [18] ISOLATION OF A CDNA-ENCODING THE ADENOVIRUS E1A ENHANCER BINDING-PROTEIN - A NEW HUMAN MEMBER OF THE ETS ONCOGENE FAMILY
    HIGASHINO, F
    YOSHIDA, K
    FUJINAGA, Y
    KAMIO, K
    FUJINAGA, K
    [J]. NUCLEIC ACIDS RESEARCH, 1993, 21 (03) : 547 - 553
  • [19] Hodge DR, 1996, ONCOGENE, V12, P11
  • [20] Janknecht R, 1996, ONCOGENE, V13, P1745