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蛋白质间短程相互作用的计算

Calculation of short-range interactions between proteins.

作者信息

Asthagiri D, Neal B L, Lenhoff A M

机构信息

Center for Molecular and Engineering Thermodynamics, Department of Chemical Engineering, University of Delaware, Newark, DE 19716, USA.

出版信息

Biophys Chem. 1999 Apr 19;78(3):219-31. doi: 10.1016/s0301-4622(99)00028-9.

Abstract

Macromolecular association is an integral component of numerous cellular and technologically relevant processes. Most molecular theories of such association neglect the explicit solvent structure and rely on continuum concepts such as surface energies for calculating short-range interactions. We present a new such method for calculating the non-electrostatic component of the interaction-free energy, based on formalisms for calculating dispersion interactions between macromolecules. The interactions are separated into a short-ranged component that is treated atomistically, and a longer range component that is treated within the continuum Lifshitz-Hamaker approach. This description avoids the singularities inherent in the continuum dispersion formulation, and its effectiveness in characterizing the shape complementarity between interacting surfaces is shown to be comparable to that of surface area-based methods of similar parametric complexity. An advantage of the new method is that it allows facile calculation of the interaction free energy as a function of intermolecular separation, including steric effects; this makes it suitable for use in simulations of protein solutions.

摘要

大分子缔合是众多细胞过程和技术相关过程中不可或缺的组成部分。大多数关于此类缔合的分子理论都忽略了明确的溶剂结构,而是依赖于诸如表面能等连续介质概念来计算短程相互作用。我们基于计算大分子间色散相互作用的形式体系,提出了一种计算无相互作用能非静电成分的新方法。相互作用被分为一个以原子方式处理的短程成分和一个在连续介质里夫希茨 - 哈马克方法中处理的长程成分。这种描述避免了连续介质色散公式中固有的奇异性,并且其在表征相互作用表面之间形状互补性方面的有效性与具有相似参数复杂度的基于表面积的方法相当。新方法的一个优点是它允许轻松计算作为分子间距离函数的相互作用自由能,包括空间效应;这使得它适用于蛋白质溶液的模拟。

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