药效团
酰胺
化学
计算生物学
同源建模
吹笛者
分子模型
立体化学
组合化学
生物化学
生物
酶
古生物学
作者
Jung Yeon Lee,Hyoung‐Soo Cho,E.-S. Hwang,S.Y. Kim,Sanghee Kim,S. Kim,S. Kim
标识
DOI:10.1080/1062936x.2019.1574894
摘要
Piper-amides exhibit diverse biological activities, including antimelanogenic effects. In our previous studies, we identified a potent piper-amide derivative that inhibited melanogenesis via the TRPM1 calcium channel. Despite its potential as a therapeutic target, the three-dimensional structure of TRPM1 is still not available. Thus, structure-guided compound design and the discovery of novel inhibitors of melanogenesis have been limited. In the present study, a series of computational methods, including homology modelling, docking, molecular dynamics simulation and field-based pharmacophore modelling, were integrated to explore the structural features of natural piper-amide-like compounds related to the TRPM1 target. These studies suggested the binding mode and provided a 3D pharmacophore model of the ligands, which can be helpful in understanding the TRPM1-ligand interactions at the molecular level and in designing potent antagonists of TRPM1.
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