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Development of a label-free competitive ligand binding assay with human serum albumin on a molecularly engineered surface plasmon resonance sensor chip

机译:在分子工程表面等离子体共振传感器芯片上开发人血清白蛋白的无标记竞争性配体结合测定

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The binding interactions between ligands and receptors play a vital role in their biological functions. In this work, a label-free indirect competitive binding assay based on surface plasmon resonance (SPR) detection was developed, using fatty acid-human serum albumin (HSA) as a model system. In the assay, a fatty acid analog was immobilized on the surface of an SPR gold chip by self-assembly, and was allowed to bind with HSA in solution. Addition of a ligand under investigation into the solution set up a competition with the analog for the protein, causing a reduction in the SPR signal. Due to the asymmetric structure of the ligand binding channel, HSA exhibited remarkable selectivity for the orientation of the fatty acid analog on a gold surface. When the carboxylic acid group of the analog was exposed on the sensor surface, the amount of bound HSA was very low. However, it increased by more than 7 fold when the alkyl chain was exposed. Dilution of the surface coverage of the fatty acid analog also enhanced HSA binding by reducing steric hindrance on the surface. Using a 1 : 4 mercaptoundecanoic acid-mercaptohexanol modified surface derivatized with octylamine, competitive binding assays for octanoic acid and perfluorooctane sulfonate with HSA were conducted. Using a derived kinetic equilibrium model, the equilibrium association constant was determined to be 4.57 x 10~5 M~(-1) and 2.11 x 10~5 M~(-1) respectively, which are consistent with the values measured by other established methods. The engineered sensor chip surface can be used to study the binding interactions of other chemicals with this important serum transport protein.
机译:配体与受体之间的结合相互作用在其生物学功能中起着至关重要的作用。在这项工作中,使用脂肪酸-人血清白蛋白(HSA)作为模型系统,开发了基于表面等离振子共振(SPR)检测的无标记间接竞争结合测定。在该测定中,通过自组装将脂肪酸类似物固定在SPR金芯片的表面上,并使其与溶液中的HSA结合。在溶液中加入正在研究的配体与该蛋白质的类似物形成竞争,导致SPR信号降低。由于配体结合通道的不对称结构,HSA对脂肪酸类似物在金表面上的取向显示出显着的选择性。当类似物的羧酸基暴露在传感器表面时,结合的HSA的量非常低。但是,当烷基链暴露时,它增加了7倍以上。脂肪酸类似物的表面覆盖物的稀释也通过减少表面上的空间位阻而增强了HSA结合。使用用辛胺衍生化的1:4巯基十一烷酸-巯基己醇改性的表面,用HSA进行辛酸和全氟辛烷磺酸的竞争结合测定。使用导出的动力学平衡模型,确定平衡缔合常数分别为4.57 x 10〜5 M〜(-1)和2.11 x 10〜5 M〜(-1),与其他既定方法测得的值一致方法。工程化的传感器芯片表面可用于研究其他化学物质与这种重要的血清转运蛋白的结合相互作用。

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