首页> 外文期刊>Journal of Agricultural and Food Chemistry >Enzymatic Synthesis of Galacto-oligosaccharides in an Organic-Aqueous Biphasic System by a Novel β-Galactosidase from a Metagenomic Library
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Enzymatic Synthesis of Galacto-oligosaccharides in an Organic-Aqueous Biphasic System by a Novel β-Galactosidase from a Metagenomic Library

机译:从基因组库中的新型β-半乳糖苷酶在有机-水双相系统中酶促合成半乳糖寡糖。

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Prebiotic galacto-oligosaccharides (GOS) were effectively synthesized from lactose in organic-aqueous biphasic media by a novel metagenome-derived β-galactosidase BgaP412. A maximum GOS yield of 46.6% (w/w) was achieved with 75.4% lactose conversion rate in the cyclohexane/buffer system [95:5 (v/v) cyclohexane/buffer] under the optimum reaction conditions (initial lactose concentration = 30% (w/v), T - 50 °C, pH 7.0, and t = 8 h). The corresponding productivity of GOS was approximately 17.5 g L~(-1) h~(-1). The GOS mixture consisted of tri-, tetra-, and pentasaccharides. Trisaccharides were the chief component of reaction products. These experimental results showed that a low water content, a high initial lactose concentration, and an elevated reaction temperature could significantly promote the transgalactosylation activity of β-galactosidase BgaP412; at the same time, the enhanced GOS yield in an organic-aqueous biphasic system is because of the fact that thermodynamic equilibrium can be shifted to the synthetic direction by reversing the normal hydrolysis.
机译:益生元半乳糖低聚糖(GOS)是由新型的基因组衍生的β-半乳糖苷酶BgaP412从乳糖在有机水双相介质中有效合成的。在最佳反应条件下(初始乳糖浓度= 30),在环己烷/缓冲液系统中乳糖转化率为75.4%[95:5(v / v)环己烷/缓冲液]时,乳糖的最高转化率达到46.6%(w / w)。 %(w / v),T-50℃,pH 7.0,t = 8小时)。相应的GOS产量约为17.5 g L〜(-1)h〜(-1)。 GOS混合物由三糖,四糖和五糖组成。三糖是反应产物的主要成分。这些实验结果表明,低水含量,高初始乳糖浓度和升高的反应温度可以显着促进β-半乳糖苷酶BgaP412的反式半乳糖基化活性。同时,有机-水两相体系中GOS产量的提高是因为可以通过逆转正常水解作用将热力学平衡转移到合成方向。

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