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Bioinspired Immobilization of Glycerol Dehydrogenase by Metal Ion-Chelated Polyethyleneimines as Artificial Polypeptides

机译:金属离子螯合的聚乙烯亚胺作为人工多肽的生物固定化甘油脱氢酶

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摘要

In this study, a novel, simple and generally applicable strategy for multimeric oxidoreductase immobilization with multi-levels interactions was developed and involved activity and stability enhancements. Linear polyethyleneimines (PEIs) are flexible cationic polymers with molecular weights that span a wide range and are suitable biomimic polypeptides for biocompatible frameworks for enzyme immobilization. Metal ion-chelated linear PEIs were applied as a heterofunctional framework for glycerol dehydrogenase (GDH) immobilization by hydrogen bonds, electrostatic forces and coordination bonds interactions. Nanoparticles with diameters from 250–650 nm were prepared that exhibited a 1.4-fold enhancement catalytic efficiency. Importantly, the half-life of the immobilized GDH was enhanced by 5.6-folds in aqueous phase at 85 °C. A mechanistic illustration of the formation of multi-level interactions in the PEI-metal-GDH complex was proposed based on morphological and functional studies of the immobilized enzyme. This generally applicable strategy offers a potential technique for multimeric enzyme immobilization with the advantages of low cost, easy operation, high activity reservation and high stability.
机译:在这项研究中,开发了一种新颖,简单且普遍适用的具有多水平相互作用的多聚体氧化还原酶固定化策略,并涉及活性和稳定性的增强。线性聚乙烯亚胺(PEI)是分子量范围很宽的挠性阳离子聚合物,是用于酶固定化生物相容性骨架的合适仿生多肽。金属离子螯合的线性PEI被用作通过氢键,静电力和配位键相互作用固定甘油脱氢酶(GDH)的杂功能框架。制备了直径为250-650 nm的纳米颗粒,它们的催化效率提高了1.4倍。重要的是,在85°C的水相中,固定化GDH的半衰期延长了5.6倍。基于固定化酶的形态学和功能研究,提出了在PEI-金属-GDH络合物中形成多级相互作用的机理图。这种普遍适用的策略提供了一种潜在的用于多聚酶固定化的技术,其具有低成本,易于操作,高活性保留和高稳定性的优点。

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