Tsuji Motonori, Shudo Koichi, Kagechika Hiroyuki
Institute of Molecular Function Saitama Japan.
Japan Pharmaceutical Information Center Shibuya-ku Tokyo Japan.
FEBS Open Bio. 2017 Feb 5;7(3):391-396. doi: 10.1002/2211-5463.12188. eCollection 2017 Mar.
Understanding and identifying the receptor subtype selectivity of a ligand is an important issue in the field of drug discovery. Using a combination of classical molecular mechanics and quantum mechanical calculations, this report assesses the receptor subtype selectivity for the human retinoid X receptor (hRXR) and retinoic acid receptor (hRAR) ligand-binding domains (LBDs) complexed with retinoid ligands. The calculated energies show good correlation with the experimentally reported binding affinities. The technique proposed here is a promising method as it reveals the origin of the receptor subtype selectivity of selective ligands.
理解和识别配体的受体亚型选择性是药物发现领域的一个重要问题。本报告结合经典分子力学和量子力学计算,评估了与类视黄醇配体复合的人类视黄醇X受体(hRXR)和视黄酸受体(hRAR)配体结合域(LBD)的受体亚型选择性。计算得到的能量与实验报道的结合亲和力具有良好的相关性。这里提出的技术是一种很有前景的方法,因为它揭示了选择性配体的受体亚型选择性的起源。