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Theoretical consideration of osmotic pressure in aqueous protein/salt systems based on extended hard core Lennard-Jones potential

机译:基于扩展硬核Lennard-Jones势的蛋白质/盐水溶液系统中渗透压的理论考虑

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摘要

A simple and analytical pair potential function was developed to represent the osmotic pressures in aqueous protein/salt systems under various conditions. Based on a hard core Lennard-Jones (HCLJ) potential model, the new potential function considers various interactions by extending the attractive Lennard-Jones potential. A temperature-dependent coefficient term was introduced to take into account the specific properties of given materials. Comparison of the new potential function with the HCLJ model in hydrocarbon and water systems showed that consideration of the temperature dependence in the potential function was effective, especially for strong polar systems such as water. To predict the osmotic pressures of aqueous lysozyme/ (NH_4) _2SO_4 solutions of various ionic strength and pH, the energy parameters of lysozyme were correlated with the experimental cloud point temperature. The proposed model agreed fairly well with the experimental osmotic pressure data with only previously obtained parameters.
机译:开发了一种简单的分析对势函数来表示各种条件下水性蛋白质/盐系统中的渗透压。基于硬核Lennard-Jones(HCLJ)势模型,新势函数通过扩展有吸引力的Lennard-Jones势来考虑各种相互作用。引入了温度相关系数项,以考虑给定材料的特定属性。在烃和水系统中,将新的势函数与HCLJ模型进行比较表明,对势函数中温度依赖性的考虑是有效的,特别是对于强极性系统(例如水)而言。为了预测各种离子强度和pH的溶菌酶/(NH_4)_2SO_4水溶液的渗透压,将溶菌酶的能量参数与实验浊点温度相关联。所提出的模型与仅具有先前获得的参数的实验渗透压数据非常吻合。

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