Dipartimento di Scienze Biomolecolari, Università degli Studi di Urbino Carlo Bo, Piazza Rinascimento 6, 61029, Urbino, Italy.
Dipartimento di Scienze degli Alimenti e del Farmaco, Università degli Studi di Parma, Parco Area delle Scienze 27/A, 43124, Parma, Italy.
Eur J Med Chem. 2022 Dec 5;243:114762. doi: 10.1016/j.ejmech.2022.114762. Epub 2022 Sep 14.
In crystal structures of melatonin MT and MT receptors, a lipophilic subpocket has been characterized which accommodates the phenyl ring of the potent agonist 2-phenylmelatonin. This subpocket appears a key structural element to achieve high binding affinity and selectivity for the MT receptor. A series of 2-arylindole ligands was synthesized to probe the requirements for the optimal occupation and interaction with the 2-phenyl binding pocket. Thermodynamic integration simulations applied to MT and MT receptors in complex with the α-naphthyl derivative provided a rationale for the MT-selectivity and investigation on the binding mode of a couple of atropisomers allowed to define the available space and arrangement of substituents inside the subpocket. Interestingly, more hydrophilic 2-aza-substituted compounds displayed high binding affinity and molecular dynamics simulations highlighted polar interaction with residues from the subpocket that could be responsible for their potency.
在褪黑素 MT 和 MT 受体的晶体结构中,已经确定了一个亲脂性亚袋,该亚袋可容纳强效激动剂 2-苯基褪黑素的苯环。这个亚袋似乎是实现高结合亲和力和对 MT 受体选择性的关键结构元素。合成了一系列 2-芳基吲哚配体,以探究最佳占据和与 2-苯基结合口袋相互作用的要求。应用于与 α-萘基衍生物结合的 MT 和 MT 受体的热力学积分模拟为 MT 选择性提供了依据,并对一对对映异构体的结合模式进行了研究,以确定亚袋内取代基的可用空间和排列。有趣的是,更亲水的 2-氮取代化合物显示出高的结合亲和力,分子动力学模拟突出了与亚袋残基的极性相互作用,这可能是它们活性的原因。