Ricketson D, Hostick U, Fang L, Yamamoto K R, Darimont B D
Institute of Molecular Biology, University of Oregon, Eugene, OR, 97403-1229, USA.
J Mol Biol. 2007 May 4;368(3):729-41. doi: 10.1016/j.jmb.2007.02.057. Epub 2007 Feb 22.
Steroid hormone receptors (SRs) are transcription factors that act as regulatory switches by altering gene expression in response to ligands. The highly conserved ligand-binding domain of SRs is a precise but versatile molecular switch that can adopt distinct conformations. Differential stabilization of these conformations by ligands, DNA response elements and transcriptional coregulators controls the activity of SRs in a gene-specific and cell-specific manner. In the case of the glucocorticoid receptor (GR), high-affinity ligand binding requires the interaction of the LBD with the heat shock protein 90 (Hsp90). Here, we show that the dependence of the ligand binding ability of GR on Hsp90 can be modified by the replacement of single amino acids within an allosteric network that connects the buried ligand-binding pocket and a solvent-exposed coregulator interaction surface. Each of the identified mutations altered the equilibrium between alternative GR conformations distinctively, indicating that the Hsp90 dependence of SRs may correlate with differences in the conformational dynamics of these receptors. Our results suggest that Hsp90 stabilizes the GR ligand-binding pocket indirectly by utilizing the allosteric network, while allowing the receptor to remain structurally uncommitted. Thus, in addition to ensuring the accessibility of the GR ligand-binding pocket to ligands, Hsp90 seems to enable hormones and coregulators to act as allosteric effectors, which forms the basis for gene-specific and cell-specific responses of GR to ligands.
类固醇激素受体(SRs)是转录因子,通过响应配体改变基因表达来充当调节开关。SRs高度保守的配体结合结构域是一个精确但多功能的分子开关,能够呈现不同的构象。配体、DNA反应元件和转录共调节因子对这些构象的差异稳定作用以基因特异性和细胞特异性的方式控制SRs的活性。就糖皮质激素受体(GR)而言,高亲和力配体结合需要配体结合结构域(LBD)与热休克蛋白90(Hsp90)相互作用。在此,我们表明,通过替换连接埋藏的配体结合口袋和溶剂暴露的共调节因子相互作用表面作用网络中的单个氨基酸,可以改变GR配体结合能力对Hsp90的依赖性。每个鉴定出的突变都独特地改变了GR不同构象之间的平衡,表明SRs对Hsp90的依赖性可能与这些受体构象动力学的差异相关。我们的结果表明,Hsp90通过利用变构网络间接稳定GR配体结合口袋,同时允许受体在结构上保持未确定状态。因此,除了确保GR配体结合口袋对配体的可及性外,Hsp90似乎还能使激素和共调节因子充当变构效应器,这构成了GR对配体的基因特异性和细胞特异性反应的基础。