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反斯托克斯荧光激发揭示了藻蓝蛋白发色团的构象流动性。

Anti-Stokes fluorescence excitation reveals conformational mobility of the C-phycocyanin chromophores.

作者信息

Tsoraev Georgy V, Protasova Elena A, Klimanova Elizaveta A, Ryzhykau Yury L, Kuklin Alexander I, Semenov Yury S, Ge Baosheng, Li Wenjun, Qin Song, Friedrich Thomas, Sluchanko Nikolai N, Maksimov Eugene G

机构信息

Faculty of Biology, Lomonosov Moscow State University, Moscow 119991, Russia.

Research Center for Molecular Mechanisms of Aging and Age-Related Diseases, Moscow Institute of Physics and Technology, Dolgoprudny 141700, Russia.

出版信息

Struct Dyn. 2022 Sep 2;9(5):054701. doi: 10.1063/4.0000164. eCollection 2022 Sep.

Abstract

The structural organization of natural pigment-protein complexes provides a specific environment for the chromophore groups. Yet, proteins are inherently dynamic and conformationally mobile. In this work, we demonstrate the heterogeneity of chromophores of C-phycocyanin (C-PC) from . Part of the population of trimeric C-PC is subject to spontaneous disturbances of protein-protein interactions resulting in increased conformational mobility of the chromophores. Upon fluorescence excitation in the visible range, the spectral signatures of these poorly populated states are masked by bulk chromophore states, but the former could be clearly discriminated when the fluorescence is excited by near-infrared quanta. Such selective excitation of conformationally mobile C-PC chromophores is due to the structure of their S level, which is characterized by a significantly broadened spectral line. We demonstrate that the anti-Stokes C-PC fluorescence is the result of single-photon absorption. By combining spectral and structural methods, we characterize four distinct states of C-PC chromophores emitting at 620, 650, 665, and 720 nm and assigned the fast component in the anti-Stokes fluorescence decay kinetics in the range of 690-750 nm to the chromophores with increased conformational mobility. Our data suggest that the spectral and temporal characteristics of the anti-Stokes fluorescence can be used to study protein dynamics and develop methods to visualize local environment parameters such as temperature.

摘要

天然色素 - 蛋白质复合物的结构组织为发色团提供了特定的环境。然而,蛋白质本质上是动态的,在构象上具有可移动性。在这项工作中,我们展示了来自[具体来源未给出]的C - 藻蓝蛋白(C - PC)发色团的异质性。三聚体C - PC群体的一部分会受到蛋白质 - 蛋白质相互作用的自发干扰,导致发色团的构象可移动性增加。在可见光范围内进行荧光激发时,这些低丰度状态的光谱特征被大量发色团状态所掩盖,但当用近红外量子激发荧光时,前者可以被清晰地区分。这种对构象可移动的C - PC发色团的选择性激发是由于其S能级的结构,其特征是光谱线显著变宽。我们证明反斯托克斯C - PC荧光是单光子吸收的结果。通过结合光谱和结构方法,我们表征了在620、650、665和720 nm处发射的C - PC发色团的四种不同状态,并将690 - 750 nm范围内反斯托克斯荧光衰减动力学中的快速成分归因于构象可移动性增加的发色团。我们的数据表明,反斯托克斯荧光的光谱和时间特征可用于研究蛋白质动力学,并开发可视化局部环境参数(如温度)的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbaf/9440762/a8ed12adf4b0/SDTYAE-000009-054701_1-g001.jpg

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