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Immobilization of L-lactate dehydrogenase on magnetic nanoclusters for chiral synthesis of pharmaceutical compounds

机译:L-乳酸脱氢酶固定在磁性纳米簇​​上用于手性合成药物化合物

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摘要

In the present work, we study the covalent immobilization of L-lactate dehydrogenase (LDH) on silica-coated magnetic nanoclusters (SiMag). Immobilization of LDH on magnetic nanoclusters provides several advantages. First, it can ease the enzyme recovery through magnetic separation, rendering the immobilized LDH applicable for batch reactor which configuration can minimize the product inhibition. Second, the immobilization resulted in the increase of product inhibition constants of LDH which can further minimize the product inhibition. A 5-fold and a 1.6-fold increase of apparent competitive product inhibition constant of NAD~+ (K_(iq)) and of lactate (K_(iq)K_p/K_q) were observed, respectively. Third, the immobilized LDH showed improvement on thermal stability, with 5-7-fold reduced deactivation rate constant in second phase (A) of biphasic deactivation behavior, but with no significant difference in the first phase (B). Present study also develops a method to improve the immobilization process by understanding the surface interaction involved during the covalent immobilization of enzyme on magnetic nanoclusters. We found that the addition of sodium chloride during the immobilization could improve the relative activity of immobilized LDH from 50% to about 75%. This was due to the possibility of hydrophobic interaction in controlling a better LDH orientation on particle surface, and thus avoiding any severe deactivation. Protein representation using Jmol software also confirmed this possibility.
机译:在目前的工作中,我们研究了L-乳酸脱氢酶(LDH)在二氧化硅包覆的磁性纳米簇​​(SiMag)上的共价固定。将LDH固定在磁性纳米团簇上具有几个优点。首先,它可以通过磁分离简化酶的回收,使固定化的LDH适用于间歇式反应器,这种配置可以最大程度地减少产物的抑制。第二,固定化导致LDH的产物抑制常数增加,这可以进一步最小化产物抑制。分别观察到NAD_ +(K_(iq))和乳酸(K_(iq)K_p / K_q)的表观竞争产物抑制常数分别提高了5倍和1.6倍。第三,固定化的LDH显示出热稳定性的改善,在双相失活行为的第二阶段(A)中失活速率常数降低了5-7倍,但在第一阶段(B)中没有显着差异。本研究还开发了一种通过了解磁性纳米簇​​上酶共价固定过程中涉及的表面相互作用来改善固定过程的方法。我们发现在固定过程中添加氯化钠可以将固定的LDH的相对活性从50%提高到大约75%。这是由于在控制颗粒表面更好的LDH方向时可能发生疏水相互作用,从而避免了严重的失活。使用Jmol软件进行蛋白质表示也证实了这种可能性。

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