Mališ Momir, Došlić Nađa
Ruđer Bošković Institute, HR-10000 Zagreb, Croatia.
Ecole polytechnique fédérale de Lausanne, CH-1015 Lausanne, Switzerland.
Molecules. 2017 Mar 21;22(3):493. doi: 10.3390/molecules22030493.
The present work is directed toward understanding the mechanisms of excited state deactivation in three neutral model peptides containing the phenylalanine residue. The excited state dynamics of theγL(g+)folded form of N-acetylphenylalaninylamide (NAPA B) and its amide-N-methylated derivative (NAPMA B) is reviewed and compared to the dynamics of the monohydrated structure of NAPA (NAPAH). The goal is to unravel how the environment, and in particular solvation, impacts the photodynamics of peptides. The systems are investigated using reaction path calculations and surface hopping nonadiabatic dynamics based on the coupled cluster doubles (CC2) method and time-dependent density functional theory. The work emphasizes the role that excitation transfer from the phenylππto amidenπstate plays in the deactivation of the three systems and shows how the ease of out-of-plane distortions of the amide group determines the rate of population transfer between the two electronic states. The subsequent dynamics on thenπ*state is barrierless along several pathways and leads to fast deactivation to the ground electronic state.
本研究旨在了解三种含有苯丙氨酸残基的中性模型肽中激发态失活的机制。回顾了N-乙酰苯丙氨酰胺(NAPA B)及其酰胺-N-甲基化衍生物(NAPMA B)的γL(g+)折叠形式的激发态动力学,并将其与NAPA(NAPAH)一水合物结构的动力学进行了比较。目的是揭示环境,特别是溶剂化作用,如何影响肽的光动力学。使用基于耦合簇双激发(CC2)方法和含时密度泛函理论的反应路径计算和表面跳跃非绝热动力学对这些体系进行了研究。这项工作强调了从苯基ππ到酰胺nπ态的激发转移在这三个体系失活中所起的作用,并展示了酰胺基团平面外扭曲的难易程度如何决定两个电子态之间的布居转移速率。随后在nπ*态上的动力学沿几条路径无势垒,并导致快速失活到基态电子态。