Coactivator recruitment by activation function 2 (AF2) in the steroid receptor ligand binding domain takes place through binding of an LXXLL amphipathic α-helical motif at the AF2 hydrophobic surface. The androgen receptor (AR) and certain AR coregulators are distinguished by an FXXLF motif that interacts selectively with the AR AF2 site. Here we show that LXXLL and FXXLF motif interactions with steroid receptors are modulated by oppositely charged residues flanking the motifs and charge clusters bordering AF2 in the ligand binding domain. An increased number of charged residues flanking AF2 in the ligand binding domain complement the two previously characterized charge clamp residues in coactivator recruitment. The data suggest a model whe...
The androgen receptor (AR) belongs to the family of nuclear receptors (NRs). These NRs are ligand-in...
The androgen receptor (AR) ligand-binding domain (LBD) binds FXXLF motifs, present in the AR N-termi...
Activation function 2 in the ligand binding domain of nuclear receptors forms a hydrophobic cleft th...
Coactivator recruitment by activation function 2 (AF2) in the steroid receptor ligand binding domain...
The androgen receptor (AR) is required for male sex development and contributes to prostate cancer c...
The androgen receptor (AR) activation function 2 region of the ligand binding domain binds the LXXLL...
textabstractAmong nuclear receptors, the androgen receptor (AR) is unique in that its ligand-b...
The androgen receptor (AR) is a ligand-activated transcription factor required for male sex developm...
The androgen receptor undergoes an androgen-specific NH(2)- and COOH-terminal interaction between NH...
The nuclear receptor superfamily members of eukaryotic transcriptional regulators contain a highly c...
Human androgen receptor (AR) transcriptional activity involves interdomain and coactivator interacti...
The agonist-induced androgen receptor NH(2)- and COOH-terminal (N/C) interaction is mediated by the ...
textabstractUpon hormone binding, a hydrophobic coactivator binding groove is induced in the androge...
The androgen receptor (AR) ligand-binding domain (LBD) binds FXXLF motifs, present in the AR N-termi...
The androgen receptor (AR) is transcriptionally activated by high affinity binding of testosterone (...
The androgen receptor (AR) belongs to the family of nuclear receptors (NRs). These NRs are ligand-in...
The androgen receptor (AR) ligand-binding domain (LBD) binds FXXLF motifs, present in the AR N-termi...
Activation function 2 in the ligand binding domain of nuclear receptors forms a hydrophobic cleft th...
Coactivator recruitment by activation function 2 (AF2) in the steroid receptor ligand binding domain...
The androgen receptor (AR) is required for male sex development and contributes to prostate cancer c...
The androgen receptor (AR) activation function 2 region of the ligand binding domain binds the LXXLL...
textabstractAmong nuclear receptors, the androgen receptor (AR) is unique in that its ligand-b...
The androgen receptor (AR) is a ligand-activated transcription factor required for male sex developm...
The androgen receptor undergoes an androgen-specific NH(2)- and COOH-terminal interaction between NH...
The nuclear receptor superfamily members of eukaryotic transcriptional regulators contain a highly c...
Human androgen receptor (AR) transcriptional activity involves interdomain and coactivator interacti...
The agonist-induced androgen receptor NH(2)- and COOH-terminal (N/C) interaction is mediated by the ...
textabstractUpon hormone binding, a hydrophobic coactivator binding groove is induced in the androge...
The androgen receptor (AR) ligand-binding domain (LBD) binds FXXLF motifs, present in the AR N-termi...
The androgen receptor (AR) is transcriptionally activated by high affinity binding of testosterone (...
The androgen receptor (AR) belongs to the family of nuclear receptors (NRs). These NRs are ligand-in...
The androgen receptor (AR) ligand-binding domain (LBD) binds FXXLF motifs, present in the AR N-termi...
Activation function 2 in the ligand binding domain of nuclear receptors forms a hydrophobic cleft th...