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An effective biphase system accelerates hesperidinase-catalyzed conversion of rutin to isoquercitrin

机译:有效的双相系统可加速橙皮苷酶催化的芦丁向异槲皮苷的转化

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摘要

Isoquercitrin is a rare, natural ingredient with several biological activities that is a key precursor for the synthesis of enzymatically modified isoquercitrin (EMIQ). The enzymatic production of isoquercitrin from rutin catalyzed by hesperidinase is feasible; however, the bioprocess is hindered by low substrate concentration and a long reaction time. Thus, a novel biphase system consisting of [Bmim][BF4]:glycine-sodium hydroxide (pH 9) (10:90, v/v) and glyceryl triacetate (1:1, v/v) was initially established for isoquercitrin production. The biotransformation product was identified using liquid chromatography-mass spectrometry, and the bonding mechanism of the enzyme and substrate was inferred using circular dichroism spectra and kinetic parameters. The highest rutin conversion of 99.5% and isoquercitrin yield of 93.9% were obtained after 3 h. The reaction route is environmentally benign and mild, and the biphase system could be reused. The substrate concentration was increased 2.6-fold, the reaction time was reduced to three tenths the original time. The three-dimensional structure of hesperidinase was changed in the biphase system, which α-helix and random content were reduced and β-sheet content was increased. Thus, the developed biphase system can effectively strengthen the hesperidinase-catalyzed synthesis of isoquercitrin with high yield.
机译:异槲皮苷是一种罕见的天然成分,具有多种生物学活性,是合成酶修饰的异槲皮苷(EMIQ)的关键前体。橙皮苷酶催化从芦丁酶法生产异槲皮苷是可行的。但是,底物浓度低和反应时间长阻碍了生物过程。因此,最初建立了由[Bmim] [BF4]:甘氨酸-氢氧化钠(pH 9)(10:90,v / v)和三乙酸甘油酯(1:1,v / v)组成的新型双相系统,用于生产异槲皮苷。使用液相色谱-质谱法鉴定生物转化产物,并使用圆二色性光谱和动力学参数推断酶与底物的键合机理。 3×h后,芦丁的转化率最高,为99.5%,异槲皮苷的产率为93.9%。该反应路线在环境上温和,温和,并且双相系统可以重复使用。底物浓度增加了2.6倍,反应时间减少到原始时间的十分之一。双相体系改变了橙皮苷酶的三维结构,α-螺旋和无规含量减少,β-折叠含量增加。因此,开发的双相系统可以高产率有效地增强橙皮苷酶催化的异槲皮苷的合成。

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