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Selection of ligands for affinity chromatography using quartz crystal biosensor

机译:使用石英晶体生物传感器选择用于亲和色谱的配体

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This paper described a new strategy for rapid selecting ligands for application in affinity chromatography using a quartz crystal microbalance (QCM) biosensor. An aminoglycoside antibiotic drug, kanamycin, (KM), was immobilized on the gold electrodes of the QCM sensor chip. The binding interactions of the immobilized KM with various proteins in solution were monitored as the variations of the resonant frequency of the modified sensor. Such a rapid screen analysis of interactions indicated clearly that KM-immobilized sensor showed strong specific interaction only with lysozyme (LZM). The resultant sensorgrams were rapidly analyzed by using a kinetic analysis software based on a genetic algorithm to derive both the kinetic rate constants (k(ass) and k(diss)) and equilibrium dissociation constants (K-D) for LZM-KM interactions. The immobilized KM showed higher affinity to LZM with a dissociation constant on the order of 10(-5) M, which is within the range of 10(-4)-10(-8) M and suitable for an affinity ligand. Therefore, KM was demonstrated for the first time as a novel affinity ligand for purification of LZM and immobilized onto the epoxy-activated silica in the presence of a high potassium phosphate concentration. The KM immobilized affinity column has proved useful for a very convenient purification of LZM from chicken egg white. The purity of LZM obtained was higher than 90%, as determined by densitometric scanninng of sodium dodecyl sulfate-polyacrylamide gel electrophoresis of purified fraction. These results confirmed that the selected KM ligand is indeed a valuable affinity ligand for purification of LZM. The new screening strategy based on a QCM biosensor is expected to be a promising way for rapid selecting specific ligands for purifying other valuable proteins.
机译:本文介绍了一种快速选择配体的新策略,该配体可用于使用石英晶体微天平(QCM)生物传感器的亲和色谱中。将氨基糖苷类抗生素药物卡那霉素(KM)固定在QCM传感器芯片的金电极上。监测固定化KM与溶液中各种蛋白质的结合相互作用,作为修饰传感器共振频率的变化。如此快速的相互作用筛查分析清楚表明,固定有KM的传感器仅与溶菌酶(LZM)表现出强的特异性相互作用。通过使用基于遗传算法的动力学分析软件对所得的传感图进行快速分析,以得出LZM-KM相互作用的动力学速率常数(k(ass)和k(diss))和平衡解离常数(K-D)。固定的KM对LZM表现出更高的亲和力,其解离常数约为10(-5)M,在10(-4)-10(-8)M的范围内,适合于亲和配体。因此,KM首次被证明是一种新颖的亲和配体,用于纯化LZM,并在高磷酸钾浓度下固定在环氧活化的二氧化硅上。已证明,KM固定亲和柱可用于非常方便地从鸡蛋白中纯化LZM。如通过纯化级分的十二烷基硫酸钠-聚丙烯酰胺凝胶电泳的密度分析所确定的,所获得的LZM的纯度高于90%。这些结果证实,所选的KM配体确实是用于LZM纯化的有价值的亲和配体。基于QCM生物传感器的新筛选策略有望成为快速选择特定配体以纯化其他有价值蛋白质的有前途的方法。

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