Institute of Biophysics SB RAS, Federal Research Center "Krasnoyarsk Science Center SB RAS", Akademgorodok 50/50, Krasnoyarsk 660036, Russia; Siberian Federal University, Svobodny Prospect 79, Krasnoyarsk 660041, Russia.
Talanta. 2017 Aug 1;170:425-431. doi: 10.1016/j.talanta.2017.04.043. Epub 2017 Apr 18.
Nowadays, physicochemical approach to understanding toxic effects remains underdeveloped. A proper development of such mode would be concerned with simplest bioassay systems. Coelenteramide-Containing Fluorescent Proteins (CLM-CFPs) can serve as proper tools for study primary physicochemical processes in organisms under external exposures. CLM-CFPs are products of bioluminescent reactions of marine coelenterates. As opposed to Green Fluorescent Proteins, the CLM-CFPs are not widely applied in biomedical research, and their potential as colored biomarkers is undervalued now. Coelenteramide, fluorophore of CLM-CFPs, is a photochemically active molecule; it acts as a proton donor in its electron-excited states, generating several forms of different fluorescent state energy and, hence, different fluorescence color, from violet to green. Contributions of the forms to the visible fluorescence depend on the coelenteramide microenvironment in proteins. Hence, CLM-CFPs can serve as fluorescence biomarkers with color differentiation to monitor results of destructive biomolecule exposures. The paper reviews experimental and theoretical studies of spectral-luminescent and photochemical properties of CLM-CFPs, as well as their variation under different exposures - chemicals, temperature, and ionizing radiation. Application of CLM-CFPs as toxicity bioassays of a new type is justified.
如今,用物理化学方法来理解毒性作用的研究仍不够发达。适当发展这种模式将涉及最简单的生物测定系统。含腔肠酰胺的荧光蛋白(CLM-CFPs)可以作为研究生物体在外部暴露下的基本物理化学过程的适当工具。CLM-CFPs 是海洋腔肠动物生物发光反应的产物。与绿色荧光蛋白不同,CLM-CFPs 在生物医学研究中应用不广泛,其作为有色生物标志物的潜力尚未得到充分重视。腔肠酰胺是 CLM-CFPs 的荧光团,是一种光化学活性分子;在其电子激发态下,它作为质子供体,产生几种不同荧光状态能量的形式,从而产生不同的荧光颜色,从紫色到绿色。这些形式对可见荧光的贡献取决于蛋白质中腔肠酰胺的微环境。因此,CLM-CFPs 可以作为荧光生物标志物,具有颜色区分功能,用于监测破坏性生物分子暴露的结果。本文综述了 CLM-CFPs 的光谱发光和光化学性质的实验和理论研究,以及它们在不同暴露(化学物质、温度和电离辐射)下的变化。证明了 CLM-CFPs 作为新型毒性生物测定的应用是合理的。