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Cholera Toxin Inhibitors Studied with High-Performance Liquid Affinity Chromatography: A Robust Method to Evaluate Receptor–Ligand Interactions

机译:高效液相亲和色谱法研究霍乱毒素抑制剂:一种评估受体-配体相互作用的稳健方法

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摘要

Anti-adhesion drugs may be an alternative to antibiotics to control infection of micro-organisms. The well-characterized interaction between cholera toxin and the cellular glycolipid GM1 makes it an attractive model for inhibition studies in general. In this report, we demonstrate a high-performance liquid affinity chromatography approach called weak affinity chromatography to evaluate cholera toxin inhibitors. The cholera toxin B-subunit was covalently coupled to porous silica and a (weak) affinity column was produced. The KD values of galactose and meta-nitrophenyl α-D-galactoside were determined with weak affinity chromatography to be 52 and 1 mM, respectively, which agree well with IC50 values previously reported. To increase inhibition potency multivalent inhibitors have been developed and the interaction with multivalent glycopolypeptides was also evaluated. The affinity of these compounds was found to correlate with the galactoside content but KD values were not obtained because of the inhomogeneous response and slow off-rate from multivalent interactions. Despite the limitations in obtaining direct KD values of the multivalent galactopolypeptides, weak affinity chromatography represents an additional and valuable tool in the evaluation of monovalent as well as multivalent cholera toxin inhibitors. It offers multiple advantages, such as a low sample consumption, high reproducibility and short analysis time, which are often not observed in other methods of analysis.
机译:抗粘连药可以替代抗生素来控制微生物的感染。霍乱毒素与细胞糖脂GM1之间的良好相互作用已使其成为一般性抑制研究的诱人模型。在本报告中,我们演示了一种称为弱亲和色谱的高效液相亲和色谱方法,以评估霍乱毒素抑制剂。霍乱毒素B亚基与多孔二氧化硅共价偶联,并产生(弱)亲和柱。半乳糖和间硝基苯基α-D-半乳糖苷的KD值通过弱亲和色谱法分别确定为52和1 mM,与先前报道的IC50值非常吻合。为了增加抑制效力,已经开发了多价抑制剂,并且还评估了与多价糖多肽的相互作用。发现这些化合物的亲和力与半乳糖苷含量相关,但是由于不均一的响应和来自多价相互作用的缓慢解离速率而未获得KD值。尽管在获得多价半乳糖多肽的直接KD值方面存在局限性,但弱亲和色谱法还是评估单价以及多价霍乱毒素抑制剂的另一种有价值的工具。它具有多种优势,例如低样品消耗,高可重复性和较短的分析时间,而其他分析方法通常无法做到这一点。

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