首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Heat capacity changes and hydrophobic interactions in the binding of FK506 and rapamycin to the FK506 binding protein.
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Heat capacity changes and hydrophobic interactions in the binding of FK506 and rapamycin to the FK506 binding protein.

机译:FK506和雷帕霉素与FK506结合蛋白结合时的热容量变化和疏水相互作用。

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摘要

Differential interactions among nonpolar moieties at protein/ligand interfaces, and of these nonpolar groups with water, collectively termed hydrophobic interactions, are widely believed to make important energetic contributions to the stability of protein/ligand complexes. Quantitative estimates of hydrophobic interactions, and an evaluation of their structural basis, are essential for obtaining structure-based predictions of the free energies of binding for the purpose of drug design. Two largely nonpolar, immunosuppressive agents, FK506 and rapamycin, each bind with high affinity to a common hydrophobic pocket on a small peptidylproline cis-trans isomerase known as FK506 binding protein (FKBP-12) and inhibit its activity. In an effort to elucidate the structural features of these ligands responsible for the observed energetics, we have undertaken an investigation of the thermodynamics of binding of FK506 and rapamycin to FKBP-12. Enthalpies of binding have been determined by high-precision titration calorimetry over a range of temperature, allowing estimates of heat capacity changes. By analyzing the distribution of changes in solvent-accessible surface area upon binding of FK506 to FKBP-12 from crystallographic data, it is found that 99% of the net surface buried upon binding involves nonpolar groups. This leads to a heat capacity change of FK506 binding, normalized to the amount of nonpolar surface, of -0.40 +/- 0.02 cal.K-1.mol-1.A-2 (1 cal = 4.18 J), a value similar to that obtained for the aqueous dissolution of hydrophobic substances. Our observations are discussed in view of the general nature of hydrophobic interaction processes.
机译:人们普遍认为,蛋白质/配体界面上非极性部分之间以及这些非极性基团与水之间的差异相互作用(统称为疏水相互作用)对蛋白质/配体复合物的稳定性做出了重要的贡献。疏水相互作用的定量估计及其结构基础的评估对于获得基于药物设计目的的结合自由能的基于结构的预测至关重要。两种主要为非极性的免疫抑制剂FK506和雷帕霉素,均与称为FK506结合蛋白(FKBP-12)的小肽基脯氨酸顺反异构酶上的常见疏水口袋高亲和力结合,并抑制其活性。为了阐明负责观察到的能量的这些配体的结构特征,我们对FK506和雷帕霉素与FKBP-12结合的热力学进行了研究。通过在一定温度范围内的高精度滴定量热法确定了结合焓,从而可以估算热容的变化。通过从晶体学数据分析FK506与FKBP-12结合时溶剂可及表面积的变化分布,发现结合时掩埋的净表面的99%涉及非极性基团。这导致FK506结合的热容变化(标准化为非极性表面的数量)为-0.40 +/- 0.02 cal.K-1.mol-1.A-2(1 cal = 4.18 J)达到疏水性物质在水中溶解所获得的水。考虑到疏水相互作用过程的一般性质,讨论了我们的观察结果。

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