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Nuclear receptor ligand-binding domains: reduction of helix H12 dynamics to favour crystallization.


ABSTRACT: Crystallization trials of the human retinoid X receptor alpha ligand-binding domain (RXRalpha LBD) in complex with various ligands have been carried out. Using fluorescence anisotropy, it has been found that when compared with agonists these small-molecule effectors enhance the dynamics of the RXRalpha LBD C-terminal helix H12. In some cases, the mobility of this helix could be dramatically reduced by the addition of a 13-residue co-activator fragment (CoA). In keeping with these observations, crystals have been obtained of the corresponding ternary RXRalpha LBD-ligand-CoA complexes. In contrast, attempts to crystallize complexes with a highly mobile H12 remained unsuccessful. These experimental observations substantiate the previously recognized role of co-regulator fragments in facilitating the crystallization of nuclear receptor LBDs.

SUBMITTER: Nahoum V 

PROVIDER: S-EPMC2443981 | biostudies-literature | 2008 Jul

REPOSITORIES: biostudies-literature

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Nuclear receptor ligand-binding domains: reduction of helix H12 dynamics to favour crystallization.

Nahoum Virginie V   Lipski Alexandra A   Quillard Fabien F   Guichou Jean François JF   Boublik Yvan Y   Pérez Efrèn E   Germain Pierre P   de Lera Angel R AR   Bourguet William W  

Acta crystallographica. Section F, Structural biology and crystallization communications 20080611 Pt 7


Crystallization trials of the human retinoid X receptor alpha ligand-binding domain (RXRalpha LBD) in complex with various ligands have been carried out. Using fluorescence anisotropy, it has been found that when compared with agonists these small-molecule effectors enhance the dynamics of the RXRalpha LBD C-terminal helix H12. In some cases, the mobility of this helix could be dramatically reduced by the addition of a 13-residue co-activator fragment (CoA). In keeping with these observations, c  ...[more]

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