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视网膜蛋白光吸收背后的电子耦合与静电相互作用

Electronic Couplings and Electrostatic Interactions Behind the Light Absorption of Retinal Proteins.

作者信息

Fujimoto Kazuhiro J

机构信息

Institute of Transformative Bio-Molecules (WPI-ITbM), Nagoya University, Nagoya, Japan.

Department of Chemistry, Graduate School of Science, Nagoya University, Nagoya, Japan.

出版信息

Front Mol Biosci. 2021 Sep 15;8:752700. doi: 10.3389/fmolb.2021.752700. eCollection 2021.

Abstract

The photo-functional chromophore retinal exhibits a wide variety of optical absorption properties depending on its intermolecular interactions with surrounding proteins and other chromophores. By utilizing these properties, microbial and animal rhodopsins express biological functions such as ion-transport and signal transduction. In this review, we present the molecular mechanisms underlying light absorption in rhodopsins, as revealed by quantum chemical calculations. Here, symmetry-adapted cluster-configuration interaction (SAC-CI), combined quantum mechanical and molecular mechanical (QM/MM), and transition-density-fragment interaction (TDFI) methods are used to describe the electronic structure of the retinal, the surrounding protein environment, and the electronic coupling between chromophores, respectively. These computational approaches provide successful reproductions of experimentally observed absorption and circular dichroism (CD) spectra, as well as insights into the mechanisms of unique optical properties in terms of chromophore-protein electrostatic interactions and chromophore-chromophore electronic couplings. On the basis of the molecular mechanisms revealed in these studies, we also discuss strategies for artificial design of the optical absorption properties of rhodopsins.

摘要

光功能发色团视黄醛根据其与周围蛋白质和其他发色团的分子间相互作用表现出多种光学吸收特性。通过利用这些特性,微生物和动物视紫红质发挥诸如离子运输和信号转导等生物学功能。在本综述中,我们展示了量子化学计算揭示的视紫红质中光吸收的分子机制。在此,对称适配簇组态相互作用(SAC-CI)、量子力学与分子力学相结合(QM/MM)以及跃迁密度片段相互作用(TDFI)方法分别用于描述视黄醛的电子结构、周围蛋白质环境以及发色团之间的电子耦合。这些计算方法成功再现了实验观察到的吸收光谱和圆二色性(CD)光谱,并从发色团-蛋白质静电相互作用和发色团-发色团电子耦合方面深入了解了独特光学性质的机制。基于这些研究中揭示的分子机制,我们还讨论了对视紫红质光学吸收特性进行人工设计的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c598/8480471/d609721858a5/fmolb-08-752700-g001.jpg

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