Tsuji Motonori
Institute of Molecular Function, 2-105-14 Takasu, Misato-shi, Saitama, 341-0037, Japan.
J Comput Aided Mol Des. 2017 Jun;31(6):577-585. doi: 10.1007/s10822-017-0025-6. Epub 2017 May 22.
HX531, which contains a dibenzodiazepine skeleton, is one of the first retinoid X receptor (RXR) antagonists. Functioning via RXR-PPARγ heterodimer, this compound is receiving a lot of attention as a therapeutic drug candidate for diabetic disease controlling differentiation of adipose tissue. However, the active conformation of HX531 for RXRs is not well established. In the present study, quantum mechanics calculations and molecular mechanical docking simulations were carried out to precisely study the docking mode of HX531 with the human RXRα ligand-binding domain, as well as to provide a new approach to drug design using a structure-based perspective. It was suggested that HX531, which has the R configuration for the bent dibenzodiazepine plane together with the equatorial configuration for the N-methyl group attached to the nitrogen atom in the seven-membered diazepine ring, is a typical activation function-2 (AF-2) fixed motif perturbation type antagonist, which destabilizes the formation of AF-2 fixed motifs. On the other hand, the docking simulations supported the experimental result that LG100754 is an RXR homodimer antagonist and an RXR heterodimer agonist.
HX531含有二苯并二氮杂卓骨架,是最早的视黄酸X受体(RXR)拮抗剂之一。该化合物通过RXR-PPARγ异二聚体发挥作用,作为一种控制脂肪组织分化的糖尿病治疗候选药物受到广泛关注。然而,HX531与RXRs的活性构象尚未明确。在本研究中,进行了量子力学计算和分子力学对接模拟,以精确研究HX531与人RXRα配体结合域的对接模式,并从基于结构的角度为药物设计提供新方法。结果表明,具有弯曲二苯并二氮杂卓平面的R构型以及七元二氮杂卓环中与氮原子相连的N-甲基的平伏构型的HX531是一种典型的激活功能-2(AF-2)固定基序扰动型拮抗剂,它会破坏AF-2固定基序的形成。另一方面,对接模拟支持了LG100754是RXR同二聚体拮抗剂和RXR异二聚体激动剂的实验结果。