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    <title>Tol, J. van</title>
    <link>http://repub.eur.nl/res/aut/15290/</link>
    <description>List of Publications</description>
    <language>en</language>
    <image>
      <url>http://repub.eur.nl/static-eur/img/logo.png</url>
      <title>RePub, Erasmus University Rotterdam</title>
      <link>http://repub.eur.nl</link>
    </image>
    <item>
      <title>Distinct recognition modes of FXXLF and LXXLL motifs by the androgen receptor. (Article)</title>
      <link>http://repub.eur.nl/res/pub/13416/</link>
      <pubDate>2004-09-01T00:00:00Z</pubDate>
      <description>Among nuclear receptors, the androgen receptor (AR) is unique in that its
      ligand-binding domain (LBD) interacts with the FXXLF motif in the
      N-terminal domain, resembling coactivator LXXLL motifs. We compared AR-
      and estrogen receptor alpha-LBD interactions of the wild-type AR FXXLF
      motif and coactivator transcriptional intermediary factor 2 LXXLL motifs
      and variants of these motifs. Random mutagenesis revealed a key role for
      the F residues in FXXLF motifs in high-affinity and selective AR LBD
      interaction. The FXXLF motif in full-length AR and transcriptional
      intermediary factor 2 LXXLL motifs competed for an overlapping binding
      site. A computer model of the AR LBD/AR FXXLF complex showed that the
      bulky F residues are buried in a deep coactivator-binding groove. The
      corresponding groove in estrogen receptor alpha LBD is considerably
      shallower, explaining lack of binding of any of the FXXLF motifs tested.
      FXXLF and LXXLL motif interaction depended on different charged amino acid
      residues in the AR LBD present at opposite ends of the coactivator groove.
      In conclusion, our data demonstrate the importance of a deep hydrophobic
      groove and alternative usage of charged amino acids in specifying peptide
      binding to the AR LBD.</description>
    </item>
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