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A MODEL OF ATTRACTIVE INTERACTIONS TO ACCOUNT FOR FLUID-FLUID PHASE SEPARATION OF PROTEIN SOLUTIONS

机译:蛋白质溶液流固相分离的吸引相互作用模型

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Concentrated gamma-crystallin and lysozyme solutions have been reported to undergo a fluid-fluid phase separation when cooled below a critical temperature. This behavior is under control of the weak forces acting in solution between macromolecules. We have used small angle x-ray scattering at the synchrotron radiation facility LURE (Orsay, France) to analyze the interaction potentials. A model of attractive interactions which depends upon three parameters, protein diameter, potential depth, and range, is able to account for both the x-ray structure factors measured at high temperature and for the low temperature phase separation. Although van der Waals forces could be at the origin of the attractive interaction potentials, other more specific effects also contribute to the protein phase diagrams. (C) 1996 American Institute of Physics. [References: 45]
机译:据报道,浓缩的γ-晶状体蛋白和溶菌酶溶液在冷却至临界温度以下时会发生流体相分离。这种行为是受大分子之间溶液中作用的弱力控制的。我们在同步加速器辐射设施LURE(法国奥赛,法国)使用小角度X射线散射来分析相互作用势。取决于三个参数(蛋白质直径,电位深度和范围)的有吸引力的相互作用模型能够解释高温下测量的X射线结构因子和低温相分离。尽管范德华力可能是吸引相互作用力的起源,但其他更具体的作用也有助于蛋白质相图。 (C)1996年美国物理研究所。 [参考:45]

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