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水溶性聚合物聚乙二醇:对海洋腔肠动物海鞘和含腔肠酰胺荧光蛋白的生物发光反应的影响。

Water-Soluble Polymer Polyethylene Glycol: Effect on the Bioluminescent Reaction of the Marine Coelenterate Obelia and Coelenteramide-Containing Fluorescent Protein.

机构信息

Biophysics Department, Siberian Federal University, 660041 Krasnoyarsk, Russia.

Institute of Biophysics SB RAS, FRC KSC SB RAS, 660036 Krasnoyarsk, Russia.

出版信息

Int J Mol Sci. 2023 Mar 28;24(7):6345. doi: 10.3390/ijms24076345.

Abstract

The current paper considers the effects of a water-soluble polymer (polyethylene glycol (PEG)) on the bioluminescent reaction of the photoprotein obelin from the marine coelenterate and the product of this bioluminescent reaction: a coelenteramide-containing fluorescent protein (CCFP). We varied PEG concentrations (0-1.44 mg/mL) and molecular weights (1000, 8000, and 35,000 a.u.). The presence of PEG significantly increased the bioluminescent intensity of obelin but decreased the photoluminescence intensity of CCFP; the effects did not depend on the PEG concentration or the molecular weight. The photoluminescence spectra of CCFP did not change, while the bioluminescence spectra changed in the course of the bioluminescent reaction. The changes can be explained by different rigidity of the media in the polymer solutions affecting the stability of the photoprotein complex and the efficiency of the proton transfer in the bioluminescent reaction. The results predict and explain the change in the luminescence intensity and color of the marine coelenterates in the presence of water-soluble polymers. The CCFP appeared to be a proper tool for the toxicity monitoring of water-soluble polymers (e.g., PEGs).

摘要

本文研究了水溶性聚合物(聚乙二醇(PEG))对海洋腔肠动物发光蛋白 obelin 的生物发光反应及其产物——含腔肠酰胺的荧光蛋白(CCFP)的影响。我们改变了 PEG 浓度(0-1.44mg/mL)和分子量(1000、8000 和 35000au)。PEG 的存在显著增加了 obelin 的生物发光强度,但降低了 CCFP 的光致发光强度;这些影响不依赖于 PEG 浓度或分子量。CCFP 的光致发光光谱没有变化,而生物发光光谱在生物发光反应过程中发生了变化。这些变化可以用聚合物溶液中不同的介质刚性来解释,这会影响光蛋白复合物的稳定性和生物发光反应中的质子转移效率。研究结果预测并解释了水溶性聚合物存在时海洋腔肠动物发光强度和颜色的变化。CCFP 似乎是一种监测水溶性聚合物(如 PEG)毒性的合适工具。

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