Georget Virginie, Bourguet William, Lumbroso Serge, Makni Salouah, Sultan Charles, Nicolas Jean-Claude
Institut National de la Santé et de la Recherche Médicale, Unité 540, Centre National de la Recherche Scientifique, Université Montpellier 1, F-34090 Montpellier, France.
Mol Endocrinol. 2006 Apr;20(4):724-34. doi: 10.1210/me.2005-0419. Epub 2005 Dec 22.
The mutation of a single amino acid in the ligand binding domain of the human androgen receptor (AR) can induce functional abnormalities; for example, in androgen binding or interactions with coregulators. We report here on the structure/function analysis of the ARE709K substitution that is associated with partial androgen insensitivity syndrome. We introduced several mutations at position 709 and tested the consequences of these changes on AR structure and activity in the presence of androgen and antiandrogens. Our results demonstrate that a strong interaction between helix H12 and residue 709 in H3 is required to obtain a fully functional AR. We show that glutamic acid 709 can be replaced by a bulky tyrosine residue without significant effect on the activation by agonists. In contrast, smaller or linear residues that are unable to maintain a tight interaction with H12 induce a substantial loss of androgen-induced AR activity. We also show that the agonist activity of partial antiandrogens is dependent on the side-chain residue at position 709. Strikingly, the ARE709Y substitution causes the conversion of cyproterone acetate into a pure antiandrogen and bicalutamide into a partial agonist. Together, our structural and functional data reveal the key role of glutamic acid 709 in androgenic and antiandrogenic activities.
人类雄激素受体(AR)配体结合域中单个氨基酸的突变可导致功能异常,例如雄激素结合或与共调节因子相互作用方面的异常。我们在此报告与部分雄激素不敏感综合征相关的ARE709K替代的结构/功能分析。我们在第709位引入了几个突变,并测试了这些变化在雄激素和抗雄激素存在下对AR结构和活性的影响。我们的结果表明,H12螺旋与H3中第709位残基之间的强相互作用是获得完全功能性AR所必需的。我们表明,谷氨酸709可以被一个大的酪氨酸残基取代,而对激动剂的激活没有显著影响。相反,无法与H12保持紧密相互作用的较小或线性残基会导致雄激素诱导的AR活性大幅丧失。我们还表明,部分抗雄激素的激动剂活性取决于第709位的侧链残基。引人注目的是,ARE709Y替代导致醋酸环丙孕酮转变为纯抗雄激素,比卡鲁胺转变为部分激动剂。总之,我们的结构和功能数据揭示了谷氨酸709在雄激素和抗雄激素活性中的关键作用。