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A stochastic cantilever approach to the evaluation of solution phase thermodynamic quantities

机译:随机悬臂方法评估固溶相热力学量

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摘要

A cantilever device based on competitive binding of an immobilized receptor to immobilized and soluble ligand and capable of measuring solution-phase thermodynamic quantities is described. Through multiple binary queries, the device stochastically measures the probability of the formation of a bound complex between immobilized protein and immobilized ligand as a function of soluble ligand concentration. The resulting binding isotherm is described by a binding polynomial consisting of the activities of soluble and immobilized ligand and binding constants for the association of immobilized protein with free and immobilized ligand. Evaluation of the polynomial reveals an association constant for the formation of a complex between immobilized ligand and immobilized protein close to that for the formation of complex between soluble protein and soluble ligand. The methodology lays the foundation for construction of practical portable sensing devices.
机译:描述了一种基于固定受体与固定配体和可溶性配体的竞争性结合并且能够测量溶液相热力学量的悬臂装置。通过多次二元查询,该设备随机测量了固定蛋白和固定配体之间结合复合物形成的可能性与可溶性配体浓度的关系。所产生的结合等温线由结合多项式描述,该结合多项式由可溶性和固定的配体的活性以及固定的蛋白质与游离的和固定的配体缔合的结合常数组成。多项式的评估揭示了固定化配体和固定化蛋白质之间形成复合物的缔合常数,与可溶性蛋白质和可溶性配体之间形成络合物的缔合常数接近。该方法为实用的便携式传感设备的构建奠定了基础。

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