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用等温滴定量热法定量测量疏水性配体的高亲和力结合。

Quantifying high-affinity binding of hydrophobic ligands by isothermal titration calorimetry.

机构信息

Molecular Biophysics, University of Kaiserslautern, Erwin-Schrödinger-Strasse 13, 67663 Kaiserslautern, Germany.

出版信息

Anal Chem. 2012 Dec 18;84(24):10715-22. doi: 10.1021/ac3025575. Epub 2012 Nov 26.

Abstract

A fast and reliable quantification of the binding thermodynamics of hydrophobic high-affinity ligands employing a new calorimetric competition experiment is described. Although isothermal titration calorimetry is the method of choice for a quantitative characterization of intermolecular interactions in solution, a reliable determination of a dissociation constant (K(D)) is typically limited to the range 100 μM > K(D) > 1 nM. Interactions displaying higher or lower K(D) values can be assessed indirectly, provided that a suitable competing ligand is available whose K(D) falls within the directly accessible affinity window. This established displacement assay, however, requires the high-affinity ligand to be soluble at high concentrations in aqueous buffer and, consequently, poses serious problems in the study of protein binding involving small-molecule ligands dissolved in organic solvents--a familiar case in many drug-discovery projects relying on compound libraries. The calorimetric competition assay introduced here overcomes this limitation, thus allowing for a detailed thermodynamic description of high-affinity receptor-ligand interactions involving poorly water-soluble compounds. Based on a single titration of receptor into a dilute mixture of the two competing ligands, this competition assay provides accurate and precise values for the dissociation constants and binding enthalpies of both high- and moderate-affinity ligands. We discuss the theoretical background underlying the approach, demonstrate its practical application to metal ion chelation and high-affinity protein-inhibitor interactions, and explore its potential and limitations with the aid of simulations and statistical analyses.

摘要

描述了一种新的量热竞争实验,用于快速可靠地定量测定疏水性高亲和力配体的结合热力学。尽管等温滴定量热法是定量表征溶液中分子间相互作用的首选方法,但解离常数(K(D))的可靠测定通常仅限于 100 μM>K(D)>1 nM 的范围。可以间接评估显示更高或更低 K(D)值的相互作用,只要有合适的竞争配体可用,其 K(D)值落在可直接访问的亲和力范围内即可。然而,这种已建立的置换测定法要求高亲和力配体在高浓度下在水性缓冲液中可溶,因此在研究涉及溶解在有机溶剂中的小分子配体的蛋白质结合时会带来严重问题——这在许多依赖化合物库的药物发现项目中是常见情况。此处介绍的量热竞争测定法克服了这一限制,从而能够详细描述涉及疏水性化合物的高亲和力受体-配体相互作用的热力学。基于受体对两种竞争配体的稀释混合物的单次滴定,该竞争测定法可提供高亲和力和中等亲和力配体的解离常数和结合焓的准确和精确值。我们讨论了该方法的理论背景,展示了其在金属离子螯合和高亲和力蛋白-抑制剂相互作用中的实际应用,并借助模拟和统计分析探讨了其潜力和局限性。

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