4.7 Article

Effect of ionic liquids on the fluorescence properties and aggregation of superfolder green fluorescence protein

期刊

JOURNAL OF COLLOID AND INTERFACE SCIENCE
卷 591, 期 -, 页码 96-105

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jcis.2021.02.002

关键词

Ionic liquid; GFP; Protein aggregation; Fluorescence; Protein compactness; Small-angle X-ray scattering (SAXS); Conformational change

资金

  1. RMIT Research Fellowship

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This study aimed to investigate the effects of ionic liquids (ILs) on the fluorescence and aggregation behavior of superfolder green fluorescent protein (sfGFP). Results showed that sfGFP was less aggregated with nitrate-based ILs compared to in buffer, but more aggregated in mesylate-based ILs. Additionally, polyol additives in IL-water mixtures slightly decreased sfGFP aggregation propensity.
Proteins generally tend to aggregate with less desirable properties in numerous solvents, which is one of the major challenges in the development of solvents for functional proteins. This work aims to utilize fluorescence spectroscopy and small angle X-ray scattering (SAXS) to understand the effects of ionic liquids (ILs) on the fluorescence and aggregation behavior of superfolder green fluorescent protein (sfGFP). The studied ILs consisted of four different anions coupled with primary, tertiary and quaternary ammonium cations. The results show that the chromophore fluorescence was generally maintained in 1 mol% IL-water mixtures, then decreased with increasing IL concentration. We primarily employed the pseudoradius of gyration (pseudo-R-g) to evaluate sfGFP aggregation. The sfGFP was less aggregated with nitrate-based ILs compared to in buffer, and more aggregated in the mesylate-based ILs. Further, we show that the polyol additives of glycerol and glucose in IL-water mixtures slightly decreased the sfGFP propensity to aggregate. Size-exclusion chromatography (SEC)-SAXS was used to characterize the monomeric sfGFP in ethylammonium nitrate (EAN) and triethylammonium mesylate (TEAMs)-water mixtures. The presence of 1 mol% TEAMs maintained the sfGFP fluorescence, promoted the compact structure, but slightly increased the amount of large aggregates, which contrasted with that of EAN. (C) 2021 Elsevier Inc. All rights reserved.

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