首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Pressure Perturbation Calorimetry and the Thermodynamics of Noncovalent Interactions in Water: Comparison of Protein-Protein, Protein-Ligand, and Cyclodextrin-Adamantane Complexes
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Pressure Perturbation Calorimetry and the Thermodynamics of Noncovalent Interactions in Water: Comparison of Protein-Protein, Protein-Ligand, and Cyclodextrin-Adamantane Complexes

机译:压力摄动量热法和水中非共价相互作用的热力学:蛋白质-蛋白质,蛋白质-配体和环糊精-金刚烷配合物的比较

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摘要

Pressure perturbation calorimetry measurements on a range of cyclodextrin-adamantane, protein-ligand (lysozyme-(GlcNac)_3 and ribonuclease-2'CMP) and protein-protein (cytochrome c peroxidase-pseudoazurin) complexes in aqueous solution show consistent reductions in thermal expansibilities compared to the uncomplexed molecules. Thermodynamic data for binding, obtained by titration calorimetry, are also reported. Changes in molar expansibilities can be related to the decrease in solvation during complexation. Although reasonable estimates for numbers of displaced water molecules may be obtained in the case of rigid cyclodextrin-adamantane complexes, protein expansibility data are less easily reconciled. Comparison of data from this wide range of systems indicates that effects are not simply related to changes in solvent-accessible surface area, but may also involve changes in macromolecular dynamics and flexibility. This adds to the growing consensus that understanding thermodynamic parameters associated with noncovalent interactions requires consideration of changes in internal macromolecular fluctuations and dynamics that may not be related to surface area-related solvation effects alone.
机译:在一系列环糊精-金刚烷,蛋白质-配体(溶菌酶-(GlcNac)_3和核糖核酸酶-2'CMP)和蛋白质-蛋白质(细胞色素c过氧化物酶-伪天青素)络合物上进行压力扰动量热法测量,结果显示热膨胀性持续降低与未复杂的分子相比。还报道了通过滴定量热法获得的结合热力学数据。摩尔可膨胀性的变化可能与络合过程中溶剂化的减少有关。尽管在刚性环糊精-金刚烷配合物的情况下,可以得出置换水分子数量的合理估计值,但蛋白质扩展性数据不太容易被核对。来自大量系统的数据比较表明,效果不仅与溶剂可及表面积的变化有关,而且还可能涉及大分子动力学和柔性的变化。这增加了越来越多的共识,即了解与非共价相互作用相关的热力学参数需要考虑内部大分子波动和动力学的变化,而这些变化可能与单独与表面积相关的溶剂化作用无关。

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