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中性绿色荧光蛋白发色团的共振增强多光子电离光谱

Resonantly Enhanced Multiphoton Ionization Spectrum of the Neutral Green Fluorescent Protein Chromophore.

作者信息

Greenwood Jason B, Miles Jordan, Camillis Simone De, Mulholland Peter, Zhang Lijuan, Parkes Michael A, Hailes Helen C, Fielding Helen H

机构信息

†Centre for Plasma Physics, School of Maths and Physics, Queen's University Belfast, University Road, Belfast BT7 1NN, United Kingdom.

‡Department of Chemistry, University College London, 20 Gordon Street, London WC1H 0AJ, United Kingdom.

出版信息

J Phys Chem Lett. 2014 Oct 16;5(20):3588-92. doi: 10.1021/jz5019256. Epub 2014 Oct 8.

Abstract

The photophysics of the green fluorescent protein is governed by the electronic structure of the chromophore at the heart of its β-barrel protein structure. We present the first two-color, resonance-enhanced, multiphoton ionization spectrum of the isolated neutral chromophore in vacuo with supporting electronic structure calculations. We find the absorption maximum to be 3.65 ± 0.05 eV (340 ± 5 nm), which is blue-shifted by 0.5 eV (55 nm) from the absorption maximum of the protein in its neutral form. Our results show that interactions between the chromophore and the protein have a significant influence on the electronic structure of the neutral chromophore during photoabsorption and provide a benchmark for the rational design of novel chromophores as fluorescent markers or photomanipulators.

摘要

绿色荧光蛋白的光物理性质由其β桶状蛋白质结构核心部位发色团的电子结构所决定。我们给出了真空中分离出的中性发色团的首个双色、共振增强多光子电离光谱,并辅以电子结构计算。我们发现其最大吸收峰为3.65±0.05电子伏特(340±5纳米),相较于中性形式蛋白质的最大吸收峰发生了0.5电子伏特(55纳米)的蓝移。我们的结果表明,发色团与蛋白质之间的相互作用在光吸收过程中对中性发色团的电子结构有显著影响,并为合理设计新型发色团作为荧光标记物或光操纵器提供了基准。

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