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Macromolecular binding and kinetic analysis with optically sectioned planar format assays

机译:大分子结合和动力学分析,采用光学切片的平面形式分析

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摘要

Real-time analysis of macromolecular interactions and competitive binding of ligands to receptors on surfaces are not typically performed using fluorescence intensity methods due to background interference from solution fluorescence. Separation-free optically sectioned planar format assays (OSPFAs) with confocal detection remove this problem. We report OSPFAs for indicator displacement and kinetic assessment of binding. A commercial androgen receptor binding domain indicator displacement assay adapted as an OSPFA yielded an IC _(50) of 6.5 nM for testosterone with Z′ = 0.77. These measured IC _(50) and Z′ values are in ranges suitable for drug screening applications with Z′ > 0.5 indicating good to excellent screenability. An OSPFA was applied to study the rate of antibody binding to a sandwich immunoassay on a planar surface. Langmuir fits provided forward rate constants in the range 2 × 10 ~3 M ~(-1) s ~(-1) to 6 × 10 ~4 M ~(-1) s ~(-1) and reverse constants 1 × 10 ~(-4) s ~(-1) to 4 × 10 ~(-3) s ~(-1) which cover a useful range for characterising probe-target interactions. This work demonstrates the suitability of OSPFAs for investigating kinetics and binding interactions using fluorescence under wash-free conditions. OSPFAs are an alternative to other separation-free methods such as acoustic, surface plasmon resonance, ellipsometry, fluorescence polarisation and other related methods. OSPFAs should make practical dynamic binding studies for small and large molecules including cases where the reaction under investigation results in no appreciable mass change on a surface.
机译:由于溶液荧光的背景干扰,通常不使用荧光强度方法对大分子相互作用和配体与表面受体的竞争性结合进行实时分析。具有共焦检测功能的无分离光学切片平面格式测定(OSPFA)消除了此问题。我们报告OSPFA用于指标位移和结合动力学评估。适于用作OSPFA的商业雄激素受体结合域指示剂位移测定法得出Z'= 0.77的睾丸激素的IC_(50)为6.5 nM。这些测得的IC _(50)和Z'值在适用于药物筛选应用的范围内,Z'> 0.5表示良好至优异的可筛选性。 OSPFA用于研究抗体与平面表面夹心免疫测定结合的速率。 Langmuir拟合提供的正向速率常数在2×10〜3 M〜(-1)s〜(-1)到6×10〜4 M〜(-1)s〜(-1)范围内,反向常数1×10 〜(-4)s〜(-1)到4×10〜(-3)s〜(-1),涵盖了表征探针-靶标相互作用的有用范围。这项工作证明了OSPFA在免洗条件下使用荧光研究动力学和结合相互作用的适用性。 OSPFA是其他无分离方法的替代方法,例如声学,表面等离振子共振,椭偏,荧光偏振和其他相关方法。 OSPFA应该对小分子和大分子进行实用的动态结合研究,包括研究中的反应导致表面没有明显质量变化的情况。

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