EaStCHEM School of Chemistry, Joseph Black Building, The King's Buildings, Edinburgh, EH9 3JJ, UK.
Phys Chem Chem Phys. 2014 Mar 14;16(10):4465-77. doi: 10.1039/c3cp54164a.
An overview of the current capabilities and limitations of molecular simulation of biomolecular complexes in the context of computer-aided drug design is provided. Steady improvements in computer hardware coupled with more refined representations of energetics are leading to a new appreciation of the driving forces of molecular recognition. Molecular simulations are poised to more frequently guide the interpretation of biophysical measurements of biomolecular complexes. Ligand design strategies emerge from detailed analyses of computed structural ensembles. The feasibility of routine applications to ligand optimization problems hinges upon successful extensive large scale validation studies and the development of protocols to intelligently automate computations.
提供了计算机辅助药物设计背景下生物分子复合物分子模拟的当前能力和局限性概述。计算机硬件的稳步改进以及更精细的能量表示方法,使得人们对分子识别的驱动力有了新的认识。分子模拟有望更频繁地指导生物分子复合物生物物理测量的解释。配体设计策略源自对计算结构总体的详细分析。常规应用于配体优化问题的可行性取决于成功的广泛大规模验证研究以及开发智能自动化计算协议。