Department of Chemical and Biomolecular Engineering, North Carolina State University, Campus Box 7905, Raleigh, North Carolina 27695-7905.
J Comput Chem. 2019 Aug 15;40(22):1946-1956. doi: 10.1002/jcc.25850. Epub 2019 May 6.
Peptoids, or poly-n-substituted glycines, are peptide-like polymers composed of a flexible backbone decorated with diverse chemical side chains. Peptoids can form a variety of self-assembling structures based on the type and sequence of the side chains attached to their backbones. All-atom molecular dynamics simulations have been useful in predicting the conformational structures of proteins and will be valuable tools for identifying combinations of peptoid side chains that may form interesting folded structures. However, peptoid models must address a major degree of freedom not common in proteins - the cis/trans isomerization of the peptide bond. This work presents CHARMM general force field (CGenFF) parameters developed to accurately represent peptoid conformational behavior, with an emphasis on a correct representation of both the cis and trans isomers of the peptoid backbone. These parameters are validated against experimental and quantum mechanics data and used to simulate three peptoid side chains in explicitly solvated systems. © 2019 Wiley Periodicals, Inc.
肽缩氨酸,或聚-N-取代甘氨酸,是由柔性主链和各种化学侧链组成的类肽聚合物。肽缩氨酸可以根据其主链上连接的侧链的类型和序列形成各种自组装结构。全原子分子动力学模拟在预测蛋白质的构象结构方面非常有用,并且将是识别可能形成有趣折叠结构的肽缩氨酸侧链组合的有价值工具。然而,肽缩氨酸模型必须解决蛋白质中不常见的一个主要自由度 - 肽键的顺/反异构化。这项工作提出了 CHARMM 通用力场(CGenFF)参数的开发,以准确表示肽缩氨酸的构象行为,重点是正确表示肽缩氨酸主链的顺式和反式异构体。这些参数经过实验和量子力学数据的验证,并用于模拟三个在明确定义溶剂系统中的肽缩氨酸侧链。© 2019 年 Wiley 期刊,公司。