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Immobilization of Old Yellow Enzymes via Covalent or Coordination Bonds

机译:通过共价或协调键固定旧的黄色酶

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Ene-reductases (ERs) belonging to the old yellow enzyme (OYE) family have been thoroughly investigated for the stereospecific reduction of activated prochiral C=C double bonds. In this work, OYE3 was immobilized both by covalent binding on glyoxyl-agarose (OYE3-GA), and by affinity-based adsorption on EziG TM particles (OYE3-EziG). The immobilized OYE3-GA was demonstrated to be active (activity recovery = 52%) and to retain almost 100% of its activity under the enzymatic assay conditions (50 mM phosphate buffer pH 7, 28 °C) for six days, whereas the activity of the non-immobilized enzyme dropped to 50% after two days. In the case of EziG TM , the highest activity recovery (54%) was achieved by using the most hydrophilic carrier (EziG TM Opal) that was selected for the full characterization of this type of enzyme preparation (stability, recycling, re-use, enzyme leakage). OYE3-EziG was slightly less stable than OYE3-GA under the same experimental conditions. OYE3-GA could be recycled and re-used for up to 12 reaction cycles in the bioreduction of α-methyl- trans -cinnamaldehyde; after 12 runs, the highest conversion achieved was 40%. In the case of the co-immobilized OYE3/GDH-EziG, the conversion dropped to 56% after two reaction cycles. No enzyme leakage was detected over 48 h for both OYE3-GA and OYE3/GDH-EziG (50 mM phosphate buffer pH 7, 28 °C). These seed results pave the way for a true optimization of the immobilization of OYE3, as well as for the use of immobilized OYE3 for preparative applications both in batch and continuous flow conditions.
机译:已经彻底研究了属于旧黄色酶(OYE)家族的ENE-还原酶(OYE)家族,用于活化的促幼儿C = C双键的立体特异性降低。在这项工作中,通过在乙醛 - 琼脂糖(Oye3-Ga)上的共价结合,并通过对Ezig TM颗粒(Oye3-Ezig)的亲和对偶联的吸附来固定Oye3。将固定化的OYE3-GA证明是活性的(活性回收率= 52%),并在酶测定条件下保留其几乎100%的活性(50mM磷酸盐缓冲液pH 7,28℃)六天,而活性在两天后,非固定化酶降至50%。在Ezig Tm的情况下,通过使用选择的最亲水载体(Ezig TM蛋白)来实现最高的活性恢复(54%),该载体(Ezig TM蛋白蛋白)用于全面表征这种酶制剂(稳定性,再循环,重新使用,酶泄漏)。在相同的实验条件下,Oye3-Ezig略低于Oye3-Ga。可以在α-甲基 - 反式的β-甲基 - 反式的生物纳米纳米醛的生物中再循环并重新使用oye3-ga在最多12个反应循环中; 12次运行后,实现的最高转化率为40%。在共固定的OYE3 / GDH-EZIG的情况下,在两次反应循环后转化率下降至56%。对于OYE3-GA和OYE3 / GDH-EZIG(50mM磷酸盐缓冲液pH 7,28℃),不检测到48小时内未检测到酶泄漏。这些种子结果为真正优化Oye3的真实优化铺平了道路,以及在分批和连续流动条件下使用固定的Oye3进行制备应用。

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