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Using receptor conformational change to detect low molecular weight analytes by surface plasmon resonance

机译:使用受体构象变化通过表面等离振子共振检测低分子量分析物

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Small molecules are difficult to directly detect using commercially available surface plasmon resonance (SPR) instruments. Ibis is because low molecular weight compounds do not have sufficient mass to cause a measurable change in refractive index. Refractive index is sensitive, however, to other properties besides the mass of the analyte. Recently the detection of substantial conformational changes for immobilized proteins using SPR has been reported. However, this property has not yet been exploited for the detection of low molecular weight ligand binding to immobilized protein receptors. Here we demonstrate that ligand-induced conformational changes can be used to monitor the binding of small molecules to immobilized maltose-binding protein and tissue transglutaminase. Ligand binding to a receptor that decreases in hydrodynamic radius yielded a net decrease in refractive index. A net positive change in refractive index was observed for a receptor that increases in hydrodynamic radius. Refractive index changes could not be explained by addition of analyte molecular mass to the surface. These SPR responses were a result of specific receptor-ligand interactions, as judged by the reversibility of the response and the similarities between the SPR-determined equilibrium dissociation constants and reported dissociation constants. Additionally, this technique proved to be effective at detecting specific ligands from a panel of small molecules. This SPR method required no alterations in widely used and commercially available instrumentation yet allowed direct detection of very small molecules such as calcium ions (40 Da). Use of receptor conformation to detect low molecular weight analytes has potential applications in the high-throughput screening of small molecule drug libraries and the development of biosensors.
机译:小分子难以使用市售的表面等离振子共振(SPR)仪器直接检测。 Ibis是因为低分子量化合物的质量不足以引起可测量的折射率变化。然而,折射率对分析物质量以外的其他性质敏感。最近,已经报道了使用SPR检测固定化蛋白的构象变化的信息。但是,该特性尚未用于检测低分子量配体与固定蛋白受体的结合。在这里,我们证明配体诱导的构象变化可用于监测小分子与固定化麦芽糖结合蛋白和组织转谷氨酰胺酶的结合。配体与流体动力学半径减小的受体的结合导致折射率的净减小。对于流体动力学半径增加的受体,观察到折射率的净正变化。不能通过在表面添加分析物分子量来解释折射率的变化。这些SPR反应是特定受体-配体相互作用的结果,由反应的可逆性和SPR测定的平衡解离常数与报道的解离常数之间的相似性来判断。此外,该技术被证明可有效地检测一组小分子中的特定配体。这种SPR方法不需要在广泛使用和可商购的仪器中进行任何改动,但可以直接检测非常小的分子,例如钙离子(40 Da)。使用受体构象检测低分子量分析物在小分子药物文库的高通量筛选和生物传感器的开发中具有潜在的应用。

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