Warner Lisa, Gjersing Erica, Follett Shelby E, Elliott K Wade, Dzyuba Sergei V, Varga Krisztina
National Renewable Energy Laboratory, Golden, CO, 80401, USA.
Department of Chemistry, University of Wyoming, Laramie, WY, 82071, USA.
Biochem Biophys Rep. 2016 Dec;8:75-80. doi: 10.1016/j.bbrep.2016.08.009. Epub 2016 Aug 11.
Ionic liquids have great potential in biological applications and biocatalysis, as some ionic liquids can stabilize proteins and enhance enzyme activity, while others have the opposite effect. However, on the molecular level, probing ionic liquid interactions with proteins, especially in solutions containing high concentration of ionic liquids, has been challenging. In the present work the C, N-enriched GB1 model protein was used to demonstrate applicability of high-resolution magic-angle-spinning (HR-MAS) NMR spectroscopy to investigate ionic liquid - protein interactions. Effect of an ionic liquid (1-butyl-3-methylimidazolium bromide, [C-mim]Br) on GB1was studied over a wide range of the ionic liquid concentrations (0.6 to 3.5 M, which corresponds to 10%-60% v/v). Interactions between GB1 and [C-mim]Br were observed from changes in the chemical shifts of the protein backbone as well as the changes in N ps-ns dynamics and rotational correlation times. Site-specific interactions between the protein and [C-mim]Br were assigned using 3D methods under HR-MAS conditions. Thus, HR-MAS NMR is a viable tool that could aid in elucidation of the molecular mechanism of ionic liquid - protein interactions.
离子液体在生物应用和生物催化方面具有巨大潜力,因为一些离子液体可以稳定蛋白质并增强酶活性,而另一些则具有相反的效果。然而,在分子水平上,探究离子液体与蛋白质的相互作用,尤其是在含有高浓度离子液体的溶液中,一直具有挑战性。在本工作中,使用富含碳、氮的GB1模型蛋白来证明高分辨率魔角旋转(HR-MAS)核磁共振光谱法在研究离子液体 - 蛋白质相互作用方面的适用性。研究了离子液体(1-丁基-3-甲基咪唑溴盐,[C-mim]Br)在广泛的离子液体浓度范围(0.6至3.5 M,相当于10%-60% v/v)对GB1的影响。从蛋白质主链化学位移的变化以及N ps-ns动力学和旋转相关时间的变化中观察到GB1与[C-mim]Br之间的相互作用。在HR-MAS条件下使用三维方法确定了蛋白质与[C-mim]Br之间的位点特异性相互作用。因此,HR-MAS核磁共振是一种可行的工具,有助于阐明离子液体 - 蛋白质相互作用的分子机制。