Adisa Bamidele, Bruce David A
Department of Chemical and Biomolecular Engineering, Clemson University, Clemson, South Carolina 29634-0909, USA.
J Phys Chem B. 2005 Oct 27;109(42):19952-9. doi: 10.1021/jp053607g.
The folding behavior of five different amine-functionalized m-poly(phenyleneethynylene) (m-PPE) oligomers containing 24 phenyl rings (12 residues, where a residue includes 2 phenyl rings) in water was examined by using a combination of molecular dynamics (MD) and replica exchange molecular dynamics (REMD) simulation techniques. The REMD method employed the highly parallelized GROMACS MD software and a modified OPLS-AA force field to simulate 44 replicas of each solvated system in parallel, with temperatures ranging from 300 to 577 K. Our results showed that the REMD method was more effective in predicting the helical conformation of the m-PPE in water, from an extended structure, than canonical MD methods in the same simulation time. Furthermore, we observed from canonical MD simulations of the explicitly solvated helical m-PPEs at 300 K that the radius of gyration, average helix inner diameter, and average helix pitch of the helical structure all pass through a minima when the side group is R = OC(2)H(5) as R is changed from R = H through OC(4)H(9).
通过结合分子动力学(MD)和复制交换分子动力学(REMD)模拟技术,研究了五种不同的含24个苯环(12个残基,一个残基包含2个苯环)的胺官能化间位聚亚苯基乙炔(m-PPE)低聚物在水中的折叠行为。REMD方法采用高度并行化的GROMACS MD软件和改进的OPLS-AA力场,并行模拟每个溶剂化体系的44个副本,温度范围为300至577 K。我们的结果表明,在相同的模拟时间内,与传统MD方法相比,REMD方法在预测水中m-PPE从伸展结构到螺旋构象方面更有效。此外,我们从300 K下明确溶剂化的螺旋状m-PPE的传统MD模拟中观察到,当侧基R从R = H变为R = OC(4)H(9)时,螺旋结构的回转半径、平均螺旋内径和平均螺旋螺距在侧基为R = OC(2)H(5)时均通过最小值。