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Protein immobilization on polyvinylphenol via tyrosine oxidation of proteins catalyzed by horseradish peroxidase

机译:通过辣根过氧化物酶催化的蛋白质的酪氨酸氧化将蛋白质固定在聚乙烯基苯酚上

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摘要

Surface functionalization of polymeric materials holds great potential in biological and medical fields with the aim toward realizing desired biological reactions (e.g., cell adhesion, and immune response), especially for proteins which have physiological functions. The objective was to examine characteristics of a unique and facile protein immobilization on a phenol-containing polymeric material utilizing horseradish peroxidase (HRP) and tyrosine residues of target proteins as catalyst and substrates, respectively. Cy3-labeled streptavidin exhibited the predicted immobilization behavior since the reaction effectively proceeded in the presence of HRP-H2O2 and on the surface of polyvinylphenol. This procedure was applicable to other representative proteins, that is, bovine serum albumin, immunoglobulin G (IgG), and HRP as substrates. However, IgG exhibited anomalous reaction behavior under the present reaction condition probably due to its rich tyrosine content. Undesired immobilization of HRP was minimized by addition of large amounts of a competitive substrate. The biotin-binding affinity of streptavidin-immobilized surface was confirmed to maintain activity even after the immobilization procedure.
机译:聚合物材料的表面功能化在生物和医学领域具有巨大的潜力,旨在实现所需的生物反应(例如,细胞粘附和免疫反应),特别是对于具有生理功能的蛋白质。目的是分别利用辣根过氧化物酶(HRP)和靶蛋白的酪氨酸残基作为催化剂和底物,研究一种独特而简单的蛋白质固定在含苯酚聚合物材料上的特性。Cy3标记的链霉亲和素表现出预测的固定行为,因为反应在HRP-H 2 O 2 O 2 O 2 存在下和聚乙烯基苯酚表面有效进行。该程序适用于其他代表性蛋白质,即牛血清白蛋白、免疫球蛋白G(IgG)和HRP作为底物。然而,IgG在目前的反应条件下表现出异常的反应行为,这可能是由于其丰富的酪氨酸含量。通过添加大量竞争性底物,HRP的意外固定化最小化。链霉亲和素固定表面的生物素结合亲和力被证实即使在固定化程序后也能保持活性。

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