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用差示扫描量热法研究蛋白质-配体结合的固有亲和力。

Intrinsic affinity of protein - ligand binding by differential scanning calorimetry.

机构信息

Department of Biothermodynamics and Drug Design, Institute of Biotechnology, Life Sciences Center, Vilnius University, Saulėtekio 7, LT-10257 Vilnius, Lithuania.

Department of Biothermodynamics and Drug Design, Institute of Biotechnology, Life Sciences Center, Vilnius University, Saulėtekio 7, LT-10257 Vilnius, Lithuania.

出版信息

Biochim Biophys Acta Proteins Proteom. 2022 Sep 1;1870(9):140830. doi: 10.1016/j.bbapap.2022.140830. Epub 2022 Aug 5.

Abstract

Differential scanning calorimetry (DSC) determines the enthalpy change upon protein unfolding and the melting temperature of the protein. Performing DSC of a protein in the presence of increasing concentrations of specifically-binding ligand yields a series of curves that can be fit to obtain the protein-ligand dissociation constant as done in the fluorescence-based thermal shift assay (FTSA, ThermoFluor, DSF). The enthalpy of unfolding, as directly determined by DSC, helps improving the precision of the fit. If the ligand binding is linked to protonation reactions, the intrinsic binding constant can be determined by performing the affinity determination at a series of pH values. Here, the intrinsic, pH-independent, affinity of acetazolamide binding to carbonic anhydrase (CA) II was determined. A series of high-affinity ligands binding to CAIX, an anticancer drug target, and CAII showed recognition and selectivity for the anticancer isozyme. Performing the DSC experiment in buffers of highly different enthalpies of protonation enabled to observe the ligand unbinding-linked protonation reactions and estimate the intrinsic enthalpy of binding. The heat capacity of combined unfolding and unbinding was determined by varying the ligand concentrations. Taken together, these parameters provided a detailed thermodynamic picture of the linked ligand binding and protein unfolding process.

摘要

差示扫描量热法(DSC)用于确定蛋白质展开时的焓变和蛋白质的熔融温度。在存在特异性结合配体的情况下对蛋白质进行 DSC 分析,可得到一系列曲线,通过拟合这些曲线可以获得蛋白质-配体解离常数,这与荧光热位移分析(FTSA,ThermoFluor,DSF)的方法相同。通过 DSC 直接确定的展开焓有助于提高拟合的精度。如果配体结合与质子化反应有关,则可以通过在一系列 pH 值下进行亲和力测定来确定内在结合常数。在这里,测定了乙酰唑胺与碳酸酐酶(CA)II 的内在、与 pH 无关的结合亲和力。一系列与 CAIX(一种抗癌药物靶点)高亲和力结合的配体显示出对抗癌同工酶的识别和选择性。在质子化焓差异很大的缓冲液中进行 DSC 实验,可观察到配体解联相关的质子化反应,并估计内在结合焓。通过改变配体浓度来确定结合和解联的总展开焓。总之,这些参数提供了一个关于结合配体和蛋白质展开过程的详细热力学图像。

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