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氨基酸取代对光激活近红外荧光蛋白PAiRFP1行为的影响。

Impact of amino acid substitutions on the behavior of a photoactivatable near infrared fluorescent protein PAiRFP1.

作者信息

Khan Faez Iqbal, Song Honghong, Hassan Fakhrul, Tian Jing, Tang Lixia, Lai Dakun, Juan Feng

机构信息

School of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu, China.

School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu, China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2021 May 15;253:119572. doi: 10.1016/j.saa.2021.119572. Epub 2021 Feb 14.

Abstract

A photoactivatable near-infrared fluorescent protein (NIR-FP) PAiRFP1 has been developed by 15 amino acid substitutions in its nonfluorescent template Agp2. In our previous communication, we investigated the role of three amino acids in PHY domain distal from BV molecule. The impact of the twelve amino acids in GAF domain, especially five residues near BV-binding pocket is unclear. In this paper, PCR based reverse mutagenesis, spectroscopic methods, molecular modelling and simulations have been employed to explore the roles of these substitutions during the molecular evolution of PAiRFP1. It was found that the residue L163 is important for protein folding in PAiRFP1. The residues F244 and C280 exerted remarkable effects on molar extinction coefficient, NIR fluorescence quantum yield, molecular brightness, fluorescence fold, and dark recovery rate. The residues F244 and V276 modulate the maximum absorption and emission peak position. The reverse mutant L168M exhibited a higher fluorescence fold than PAiRFP1. Additionally, the reverse mutants V203A, V294E, S218G and D127G possessed better spectral properties than PAiRFP1. This study is important for the rational design of a better BphP-based photoactivatable NIR-FPs.

摘要

通过在其非荧光模板Agp2中进行15个氨基酸替换,开发出了一种光激活近红外荧光蛋白(NIR-FP)PAiRFP1。在我们之前的交流中,我们研究了位于BV分子远端的PHY结构域中三个氨基酸的作用。而GAF结构域中十二个氨基酸的影响,尤其是靠近BV结合口袋的五个残基的影响尚不清楚。在本文中,我们采用了基于PCR的反向诱变、光谱方法、分子建模和模拟来探索这些替换在PAiRFP1分子进化过程中的作用。研究发现,残基L163对PAiRFP1中的蛋白质折叠很重要。残基F244和C280对摩尔消光系数、近红外荧光量子产率、分子亮度、荧光倍数和暗恢复率有显著影响。残基F244和V276调节最大吸收和发射峰位置。反向突变体L168M表现出比PAiRFP1更高的荧光倍数。此外,反向突变体V203A、V294E、S218G和D127G具有比PAiRFP1更好的光谱特性。这项研究对于合理设计更好的基于BphP的光激活近红外荧光蛋白具有重要意义。

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