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关于具有大斯托克斯位移的红色荧光蛋白mKeima激发态质子转移和光异构化的量子力学/分子力学计算

QM/MM Calculations on Excited-State Proton Transfer and Photoisomerization of a Red Fluorescent Protein mKeima with Large Stokes Shift.

作者信息

Pan Guang-Ning, Liu Xiang-Yang, Cui Ganglong, Fang Wei-Hai

机构信息

Key Laboratory of Theoretical and Computational Photochemistry, Ministry of Education, College of Chemistry, Beijing Normal University, Beijing 100875, China.

College of Chemistry and Material Science, Sichuan Normal University, Chengdu 610068, China.

出版信息

Biochemistry. 2025 Jan 7;64(1):277-288. doi: 10.1021/acs.biochem.4c00586. Epub 2024 Dec 23.

Abstract

Large Stokes shift red fluorescent proteins (LSS-RFPs) are of growing interest for multicolor bioimaging applications. However, their photochemical mechanisms are not fully understood. Here, we employed the QM(XDW-CASPT2//CASSCF)/MM method to investigate the excited-state proton transfer and photoisomerization processes of the LSS-RFP mKeima starting from its cis neutral isomer. Upon excitation to the bright S state in the Franck-Condon region, mKeima relaxes to a metastable minimum-energy state. From this short-lived species, two competing deactivation pathways are available: the excited-state proton transfer in the S state, and the S decay via the S/S conical intersection as a result of the cis-trans photoisomerization. In comparison, the former is a dominant excited-state relaxation pathway, leading to the cis anionic isomer of mKeima in the S state. This anionic intermediate then undergoes cis-trans photoisomerization after overcoming a barrier of approximately 10 kcal/mol in the S state, which is followed by an excited-state decay via the S/S conical intersection region. The efficient nonadiabatic decay of the cis anionic isomer of mKeima in the S state inhibits the radiative process, leading to a weak emission around 520 nm observed experimentally. These findings shed important mechanistic light on the experimental observations and provide valuable insights that could help in the design of LSS-RFPs with superior fluorescence properties.

摘要

大斯托克斯位移红色荧光蛋白(LSS-RFP)在多色生物成像应用中越来越受到关注。然而,它们的光化学机制尚未完全了解。在这里,我们采用QM(XDW-CASPT2//CASSCF)/MM方法,从其顺式中性异构体出发,研究LSS-RFP mKeima的激发态质子转移和光异构化过程。在弗兰克-康登区域激发到明亮的S态后,mKeima弛豫到一个亚稳态的最低能量状态。从这个短寿命物种出发,有两条相互竞争的失活途径:S态的激发态质子转移,以及由于顺反光异构化通过S/S锥形交叉点的S衰变。相比之下,前者是主要的激发态弛豫途径,导致S态的mKeima顺式阴离子异构体。这个阴离子中间体在S态克服约10 kcal/mol的势垒后进行顺反光异构化,随后通过S/S锥形交叉点区域进行激发态衰变。mKeima在S态的顺式阴离子异构体的有效非绝热衰变抑制了辐射过程,导致实验中观察到约520 nm处的弱发射。这些发现为实验观察提供了重要的机制性见解,并提供了有价值的见解,有助于设计具有优异荧光特性的LSS-RFP。

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