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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Modeling implicit reorganization in continuum descriptions of protein-protein interactions.
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Modeling implicit reorganization in continuum descriptions of protein-protein interactions.

机译:在蛋白质-蛋白质相互作用的连续描述中建模隐式重组。

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The determination of free energies that govern protein-protein recognition is essential for a detailed molecular understanding of biological specificity. Continuum models of macromolecular interactions, in which the solvent is treated by an implicit representation and the proteins are treated semi-microscopically, are computationally tractable for estimating free energies, yet many questions remain concerning their accuracy. This article reports a continuum analysis of the free-energy changes underlying the binding of 31 interfacial alanine substitutions of two complexes of the antihen egg white lysozyme (HEL) antibody D1.3 bound with HEL or the antibody E5.2. Two implicit schemes for modeling the effects of protein and solvent relaxation were examined, in which the protein environment was treated as either homogeneous with a "protein dielectric constant" of epsilon(p) = 4 or inhomogeneous, with epsilon(p) = 4 for neutral residues and epsilon(p) = 25 for ionized residues. The results showed that the nonuniform dielectric model reproduced the experimental differences better, with an average absolute error of +/-1.1 kcal/mol, compared with +/-1.4 kcal/mol for the uniform model. More importantly, the error for charged residues in the nonuniform model is +/-0.8 kcal/mol and is nearly half of that corresponding to the uniform model. Several substitutions were clearly problematic in determining qualitative trends and probably required explicit structural reorganization at the protein-protein interface.
机译:确定控制蛋白质-蛋白质识别的自由能对于分子对生物学特异性的详细理解至关重要。大分子相互作用的连续模型,其中溶剂通过隐式表示进行处理,蛋白质通过半微观方法进行处理,在计算上很容易估算自由能,但是仍然存在许多有关其准确性的问题。本文报告的自由能变化的连续谱分析,涉及结合有HEL或抗体E5.2的抗蛋清蛋白溶菌酶(HEL)抗体D1.3的两个复合物的31种界面丙氨酸取代的结合。研究了两种模拟蛋白质和溶剂松弛效果的隐式方案,其中将蛋白质环境视为具有“ε介电常数”εil(p)= 4的同质或不均匀,其中εilp(p)= 4中性残留物,电离残留物的epsilon(p)= 25。结果表明,与均匀模型相比,非均匀介电模型更好地再现了实验差异,平均绝对误差为+/- 1.1 kcal / mol。更重要的是,非均匀模型中带电残基的误差为+/- 0.8 kcal / mol,几乎是均匀模型所对应误差的一半。在确定定性趋势时,显然存在一些取代问题,并且可能需要在蛋白质-蛋白质界面处进行明确的结构重组。

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