van de Wijngaart Dennis J, van Royen Martin E, Hersmus Remko, Pike Ashley C W, Houtsmuller Adriaan B, Jenster Guido, Trapman Jan, Dubbink Hendrikus J
Department of Urology, Josephine Nefkens Institute, Erasmus MC, P. O. Box 1738, 3000 DR Rotterdam, The Netherlands.
J Biol Chem. 2006 Jul 14;281(28):19407-16. doi: 10.1074/jbc.M602567200. Epub 2006 May 11.
Upon hormone binding, a hydrophobic coactivator binding groove is induced in the androgen receptor (AR) ligand-binding domain (LBD). This groove serves as high affinity docking site for alpha-helical FXXLF motifs present in the AR N-terminal domain and in AR cofactors. Study of the amino acid requirements at position +4 of the AR FXXLF motif revealed that most amino acid substitutions strongly reduced or completely abrogated AR LBD interaction. Strong interactions were still observed following substitution of Leu+4 by Phe or Met residues. Leu+4 to Met or Phe substitutions in the FXXLF motifs of AR cofactors ARA54 and ARA70 were also compatible with strong AR LBD binding. Like the corresponding FXXLF motifs, interactions of FXXFF and FXXMF variants of AR and ARA54 motifs were AR specific, whereas variants of the less AR-selective ARA70 motif displayed increased AR specificity. A survey of currently known AR-binding proteins revealed the presence of an FXXFF motif in gelsolin and an FXXMF motif in PAK6. In vivo fluorescence resonance energy transfer and functional protein-protein interaction assays showed direct, efficient, and specific interactions of both motifs with AR LBD. Mutation of these motifs abrogated interaction of gelsolin and PAK6 proteins with AR. In conclusion, we have demonstrated strong interaction of FXXFF and FXXMF motifs to the AR coactivator binding groove, thereby mediating specific binding of a subgroup of cofactors to the AR LBD.
激素结合后,雄激素受体(AR)配体结合域(LBD)中会诱导出一个疏水共激活因子结合凹槽。该凹槽作为高亲和力对接位点,用于结合AR N端结构域和AR辅因子中存在的α螺旋FXXLF基序。对AR FXXLF基序第 +4 位氨基酸需求的研究表明,大多数氨基酸取代会强烈降低或完全消除AR LBD相互作用。用Phe或Met残基取代Leu+4后仍能观察到强相互作用。AR辅因子ARA54和ARA70的FXXLF基序中Leu+4被Met或Phe取代也与强AR LBD结合兼容。与相应的FXXLF基序一样,AR和ARA54基序的FXXFF和FXXMF变体的相互作用具有AR特异性,而选择性较低的ARA70基序的变体则显示出增强的AR特异性。对目前已知的AR结合蛋白的调查显示,凝溶胶蛋白中存在FXXFF基序,PAK6中存在FXXMF基序。体内荧光共振能量转移和功能性蛋白质-蛋白质相互作用测定表明,这两个基序都与AR LBD存在直接、有效且特异性的相互作用。这些基序的突变消除了凝溶胶蛋白和PAK6蛋白与AR的相互作用。总之,我们已经证明FXXFF和FXXMF基序与AR共激活因子结合凹槽有强烈相互作用,从而介导了一组辅因子与AR LBD的特异性结合。