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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Locating the binding domains of lysozyme with ionic liquids in aqueous solution via spectroscopic studies
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Locating the binding domains of lysozyme with ionic liquids in aqueous solution via spectroscopic studies

机译:通过光谱研究将溶菌酶溶菌酶的结合结构域定位为水溶液中的离子液体

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The binding domains of lysozyme with ionic liquids (ILs, [C(4)mim]BF4, [C(4)mim]Cl, [C(4)mim]Br and [dmim]I) in aqueous solution was investigated by studying molecular interactions using spectroscopic techniques. Ultraviolet spectroscopy (UV) showed that the addition of ILs increased the absorption peak intensity of lysozyme at 210 nm by enhancing peptide bond valence electron transition. It is also found that a weak interaction between ILs and lysozyme chromophore groups was generated by analyzing the changes of absorption peak intensity near 280 nm. Fluorescence and Synchronous Fluorescence spectra results showed that four ILs had quenching effect on the fluorescent substances of lysozyme, and the quenching effect rose with increasing ILs concentration. Meanwhile, the interaction between lysozyme and ILs molecules is mainly based on Van der Waals force and two Tryptophan (Trp) residues (Trp62 or Trp108) at the active site of lysozyme molecules play a critical role in binding ILs to their own molecules. (C) 2019 Published by Elsevier B.V.
机译:通过研究研究了与离子液体(ILS,[C(4)MIM] BF4,[C(4)MIM] Cl,[C(4)MIM] Cl,[C(4)MIM] Br和ωi)的溶菌酶(ILS,[C(4)MIM] Cl,[Dmim] I)进行研究使用光谱技术的分子相互作用。紫外光谱(UV)显示,通过增强肽键合格电子转变,加入ILS在210nm下增加溶菌酶的吸收峰强度。还发现,通过分析吸收峰强度靠近280nm的变化,产生ILS和溶菌酶色团之间的弱相互作用。荧光和同步荧光光谱结果表明,四个ILS对溶菌酶的荧光物质有猝灭作用,淬火效果随着ILS浓度的增加而升高。同时,溶菌酶和ILS分子之间的相互作用主要基于vac der WaaS力和溶菌酶分子的活性位点的两种色氨酸(Trp62或Trp108)在将ILs与其自身的分子结合时起着关键作用。 (c)2019年由elestvier b.v发布。

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