Maalouf G J, Xu W, Smith T F, Mohr S C
Boston University, BioMolecular Engineering Research Center, MA 02215, USA.
J Biomol Struct Dyn. 1998 Apr;15(5):841-51. doi: 10.1080/07391102.1998.10508206.
We have modeled the ligand-binding domain (LBD) of the human estrogen receptor protein (hER) by homology to the known crystal structure of the LBD of the alpha isoform of human retinoate-X receptor (hRX). Alignment of hER with members of the nuclear receptor superfamily defined probable secondary structures which we used to constrain backbone torsion angles and hydrogen bonds. From published studies we identified key interactions between hER and estradiol to use to dock the hormone in its ligand-binding pocket. Since the hRX crystal structure corresponds to the unliganded form of the LBD, we adopted the "mousetrap" mechanism proposed by Renaud et al to predict the structure of the E2-bound hER. Refinement by molecular dynamics and energy minimization gave a model which matches well the known facts about the estradiol phamacophore. It also provides a possible explanation for how hER discriminates between estradiol and testosterone.
我们通过与人类视黄酸-X受体α亚型(hRX)配体结合域(LBD)的已知晶体结构进行同源性分析,对人类雌激素受体蛋白(hER)的配体结合域进行了建模。将hER与核受体超家族成员进行比对,确定了可能的二级结构,我们利用这些结构来限制主链扭转角和氢键。通过已发表的研究,我们确定了hER与雌二醇之间的关键相互作用,以便将激素对接至其配体结合口袋中。由于hRX晶体结构对应于LBD的未结合配体形式,我们采用了勒诺等人提出的“捕鼠器”机制来预测与E2结合的hER的结构。通过分子动力学和能量最小化进行优化,得到了一个与雌二醇药效基团的已知事实非常匹配的模型。它还为hER如何区分雌二醇和睾酮提供了一种可能的解释。