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一种用于最小程度扰动肽的快速光开关:N-甲基硫代乙酰胺反式→顺式光异构化的研究

A fast photoswitch for minimally perturbed peptides: investigation of the trans-->cis photoisomerization of N-methylthioacetamide.

作者信息

Helbing Jan, Bregy Harald, Bredenbeck Jens, Pfister Rolf, Hamm Peter, Huber Robert, Wachtveitl Josef, De Vico Luca, Olivucci Massimo

机构信息

Physikalisch-Chemisches Institut, Winterthurerstrasse 190, Universität Zürich, CH-8057 Zürich, Switzerland.

出版信息

J Am Chem Soc. 2004 Jul 21;126(28):8823-34. doi: 10.1021/ja049227a.

Abstract

Thio amino acids can be integrated into the backbone of peptides without significantly perturbing their structure. In this contribution we use ultrafast infrared and visible spectroscopy as well as state-of-the-art ab initio computations to investigate the photoisomerization of the trans form of N-methylthioacetamide (NMTAA) as a model conformational photoswitch. Following the S2 excitation of trans-NMTAA in water, the return of the molecule into the trans ground state and the formation of the cis isomer is observed on a dual time scale, with a fast component of 8-9 ps and a slow time constant of approximately 250 ps. On both time scales the probability of isomerization to the cis form is found to be 30-40%, independently of excitation wavelength. Ab initio CASPT2//CASSCF photochemical reaction path calculations indicate that, in vacuo, the trans-->cis isomerization event takes place on the S1 and/or T1 triplet potential energy surfaces and is controlled by very small energy barriers, in agreement with the experimentally observed picosecond time scale. Furthermore, the calculations identify one S2/S1 and four nearly isoenergetic S1/S0 conical intersection decay channels. In line with the observed isomerization probability, only one of the S1/S0 conical intersections yields the cis conformation upon S1-->S0 decay. A substantially equivalent excited-state relaxation results from four T1/S0 intersystem crossing points.

摘要

硫代氨基酸可以整合到肽的主链中,而不会显著扰乱其结构。在本论文中,我们使用超快红外和可见光谱以及最先进的从头算计算方法,来研究N-甲基硫代乙酰胺(NMTAA)反式构象作为模型构象光开关的光异构化过程。在水中对反式NMTAA进行S2激发后,观察到分子回到反式基态以及顺式异构体的形成,这一过程在双时间尺度上发生,快速成分的时间常数为8 - 9皮秒,慢速时间常数约为250皮秒。在这两个时间尺度上,异构化为顺式形式的概率均为30 - 40%,与激发波长无关。从头算CASPT2//CASSCF光化学反应路径计算表明,在真空中,反式到顺式的异构化事件发生在S1和/或T1三重态势能面上,并且由非常小的能垒控制,这与实验观察到的皮秒时间尺度一致。此外,计算确定了一个S2/S1和四个几乎等能量的S1/S0锥形交叉衰变通道。与观察到的异构化概率一致,在S1→S0衰变时,只有一个S1/S0锥形交叉产生顺式构象。四个T1/S0系间窜越点导致了基本等效的激发态弛豫。

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