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Protein-Flavonoid Interaction Studies by a Taylor Dispersion Surface Plasmon Resonance (SPR) Technique: A Novel Method to Assess Biomolecular Interactions

机译:泰勒分散表面等离振子共振(SPR)技术的蛋白质-类黄酮相互作用研究:一种评估生物分子相互作用的新方法。

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Flavonoids are common polyphenolic compounds widely distributed in fruits and vegetables. These pigments have important pharmacological relevance because emerging research suggests possible anti-cancer and anti-inflammatory properties as well other beneficial health effects. These compounds are relatively hydrophobic molecules, suggesting the role of blood transport proteins in their delivery to tissues. In this study, we assess the binding interactions of four flavonoids (kaempferol, luteolin, quercetin, and resveratrol) with human serum albumin (HSA), the most abundant protein in the blood, and with glutathione S-transferase pi isoform-1 (GSTP1), an enzyme with well-characterized hydrophobic binding sites that plays an important role in detoxification of xenobiotics with reduced glutathione, using a novel Taylor dispersion surface plasmon resonance (SPR) technique. For the first time, HSA sites revealed a high-affinity binding site for flavonoid interactions. Out of the four flavonoids that we examined, quercetin and kaempferol showed the strongest equilibrium binding affinities ( K D ) of 63 ± 0.03 nM and 37 ± 0.07 nM, respectively. GSTP1 displayed lower affinities in the micromolar range towards all of the flavonoids tested. The interactions of flavonoids with HSA and GSTP1 were studied successfully using this novel SPR assay method. The new method is compatible with both kinetic and equilibrium analyses.
机译:类黄酮是常见的多酚类化合物,广泛分布于水果和蔬菜中。这些颜料具有重要的药理学意义,因为新兴的研究表明可能的抗癌和抗炎特性以及其他有益健康的作用。这些化合物是相对疏水的分子,表明血液转运蛋白在其递送至组织中的作用。在这项研究中,我们评估了四种类黄酮(山奈酚,木犀草素,槲皮素和白藜芦醇)与人血清白蛋白(HSA),血液中最丰富的蛋白质以及谷胱甘肽S-转移酶pi亚型1(GSTP1)的结合相互作用。 ),一种具有良好疏水结合位点的酶,使用新型泰勒分散表面等离振子共振(SPR)技术在减少谷胱甘肽的异生物解毒中起重要作用。 HSA位点首次揭示了类黄酮相互作用的高亲和力结合位点。在我们检查的四种类黄酮中,槲皮素和山emp酚显示出最强的平衡结合亲和力(K D)分别为63±0.03 nM和37±0.07 nM。 GSTP1在微摩尔范围内对所有测试的类黄酮显示出较低的亲和力。使用这种新颖的SPR测定方法,成功研究了类黄酮与HSA和GSTP1的相互作用。新方法与动力学分析和平衡分析均兼容。

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