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首页> 外文期刊>Acta Biochimica Polonica >Laccase activity and stability in the presence of menthol-based ionic liquids*
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Laccase activity and stability in the presence of menthol-based ionic liquids*

机译:在基于薄荷醇的离子液体存在下漆酶活性和稳定性*

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摘要

Laccases attract attention due to their potential for manufacturing pharmaceutical intermediates from a wide array of phenolic and non-phenolic substrates that are sparingly soluble in water. Because of the high polarity of ionic liquids (ILs), they can dissolve polar and nonpolar compounds and are claimed as "green" alternative for volatile organic solvents. The main aim of this work was to find water-immiscible ILs suitable for Cerrena unicolor laccase. For that five ILs with bis(trifluoromethanesulfonyl)imide anions coupled with cations derived from natural alcohol — (1R,2S,5R)- (–)-menthol were synthesized, namely: (I) 3-butyl- 1-[(1R,2S,5R)-(–)-menthoxymethyl]imidazolium, (II) 1-[(1R,2S,5R)-(–)-menthoxymethyl]-3-heptylimidazolium, (III) 1-[(1R,2S,5R)-(–)-menthoxymethyl]-3-methylpyridinium, (IV) heptyl[(1R,2S,5R)-(–)-menthoxymethyl]dimethylammonium, and (V) decyl[(1R,2S,5R)-(–)-menthoxymethyl] dimethylammonium ions. Laccase activity was tested in buffer saturated with ILs whereas stability tests in biphasic systems lasted 5 days. It was shown that ILs I, III-V did not significantly alter laccase activity (being 90–123% respective to the buffer) whereas IL II decreased reactivity in 20%. Stability tests revealed that ILs I, IV and V increased enzyme stability even more than in the buffer. For mathematical formalization of inactivation courses, isoenzyme model was applied but this model fitted experimental data only for sets obtained in the buffer (control) and in the presence of IL II. In the other cases, first-order reaction model was sufficient. This shows that ILs, even at very low concentrations, influence conformational stability of proteins, which is dependent on the cation structure. In general, the imidazolium (I) and ammonium (IV) salts with shorter alkyl chains supported laccase activity and stability.
机译:漆酶因其有潜力从多种微溶于水的酚类和非酚类底物制造医药中间体而备受关注。由于离子液体(ILs)的极性高,它们可以溶解极性和非极性化合物,因此被称为挥发性有机溶剂的“绿色”替代品。这项工作的主要目的是找到适合于Cerrena单色漆酶的与水不混溶的IL。为此,合成了五个具有双(三氟甲磺酰基)酰亚胺阴离子和天然醇衍生的阳离子的ILs-(1R,2S,5R)-(-)-薄荷醇,即:(I)3-丁基-1-[[(1R, 2S,5R)-(–)-薄荷氧基甲基]咪唑,(II)1-[((1R,2S,5R)-(–)-薄荷氧基甲基] -3-庚酰亚胺,(III)1-[(1R,2S,5R )-(-)-薄荷醇甲基] -3-甲基吡啶鎓,(IV)庚基[(1R,2S,5R)-(-)-薄荷醇甲基]二甲基铵和(V)癸基[(1R,2S,5R)-(– )-薄荷醇甲基]二甲基铵离子。在用IL饱和的缓冲液中测试了漆酶活性,而在双相系统中的稳定性测试则持续了5天。结果表明,ILs I,III-V不会显着改变漆酶活性(分别为缓冲液的90–123%),而IL II降低了20%的反应性。稳定性测试表明,ILs I,IV和V的酶稳定性甚至比缓冲液中的酶稳定性更高。对于失活过程的数学形式化,应用了同工酶模型,但是该模型仅针对在缓冲液(对照)中和存在IL II时获得的数据集拟合了实验数据。在其他情况下,一阶反应模型就足够了。这表明,即使浓度非常低,IL也会影响蛋白质的构象稳定性,这取决于阳离子的结构。通常,具有较短烷基链的咪唑鎓盐(I)和铵盐(IV)支持漆酶活性和稳定性。

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