Deplazes Evelyne
School of Biomedical Sciences, Curtin Health Innovation Research Institute, Curtin University, Perth, WA 6102, Australia.
School of Chemistry and Molecular Biosciences, The University of Queensland, Brisbane, QLD 4072, Australia.
Molecules. 2017 Feb 27;22(3):362. doi: 10.3390/molecules22030362.
Disulfide-rich peptides isolated from the venom of arthropods and marine animals are a rich source of potent and selective modulators of ion channels. This makes these peptides valuable lead molecules for the development of new drugs to treat neurological disorders. Consequently, much effort goes into understanding their mechanism of action. This paper presents an overview of how molecular simulations have been used to study the interactions of disulfide-rich venom peptides with ion channels and membranes. The review is focused on the use of docking, molecular dynamics simulations, and free energy calculations to (i) predict the structure of peptide-channel complexes; (ii) calculate binding free energies including the effect of peptide modifications; and (iii) study the membrane-binding properties of disulfide-rich venom peptides. The review concludes with a summary and outlook.
从节肢动物和海洋动物毒液中分离出的富含二硫键的肽是离子通道强效和选择性调节剂的丰富来源。这使得这些肽成为开发治疗神经疾病新药的有价值的先导分子。因此,人们投入了大量精力来了解它们的作用机制。本文概述了如何利用分子模拟来研究富含二硫键的毒液肽与离子通道和膜的相互作用。综述重点介绍了对接、分子动力学模拟和自由能计算的应用,以(i)预测肽-通道复合物的结构;(ii)计算包括肽修饰影响在内的结合自由能;以及(iii)研究富含二硫键的毒液肽的膜结合特性。综述最后进行了总结和展望。