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晶状体γ-晶体蛋白水溶液中的相分离:γs的特殊作用。

Phase separation in aqueous solutions of lens gamma-crystallins: special role of gamma s.

作者信息

Liu C, Asherie N, Lomakin A, Pande J, Ogun O, Benedek G B

机构信息

Department of Physics, Massachusetts Institute of Technology, Cambridge 02139, USA.

出版信息

Proc Natl Acad Sci U S A. 1996 Jan 9;93(1):377-82. doi: 10.1073/pnas.93.1.377.

Abstract

We have studied liquid-liquid phase separation in aqueous ternary solutions of calf lens gamma-crystallin proteins. Specifically, we have examined two ternary systems containing gamma s--namely, gamma IVa with gamma s in water and gamma II with gamma s in water. For each system, the phase-separation temperatures (Tph (phi)) alpha as a function of the overall protein volume fraction phi at various fixed compositions alpha (the "cloud-point curves") were measured. For the gamma IVa, gamma s, and water ternary solution, a binodal curve composed of pairs of coexisting points, (phi I, alpha 1) and (phi II, alpha II), at a fixed temperature (20 degrees C) was also determined. We observe that on the cloud-point curve the critical point is at a higher volume fraction than the maximum phase-separation temperature point. We also find that typically the difference in composition between the coexisting phases is at least as significant as the difference in volume fraction. We show that the asymmetric shape of the cloud-point curve is a consequence of this significant composition difference. Our observation that the phase-separation temperature of the mixtures in the high volume fraction region is strongly suppressed suggests that gamma s-crystallin may play an important role in maintaining the transparency of the lens.

摘要

我们研究了小牛晶状体γ-晶状体蛋白在三元水溶液中的液-液相分离。具体而言,我们考察了两个含有γs的三元体系,即在水中γIVa与γs的体系以及在水中γII与γs的体系。对于每个体系,测量了在不同固定组成α下,相分离温度(Tph(φ))随总蛋白体积分数φ的变化关系(“浊点曲线”)。对于γIVa、γs和水的三元溶液,还确定了在固定温度(20℃)下由共存点对(φI,α1)和(φII,αII)组成的双节线曲线。我们观察到在浊点曲线上,临界点的体积分数高于最大相分离温度点。我们还发现,通常共存相之间的组成差异至少与体积分数差异一样显著。我们表明,浊点曲线的不对称形状是这种显著组成差异的结果。我们观察到高体积分数区域混合物的相分离温度受到强烈抑制,这表明γs-晶状体蛋白可能在维持晶状体透明度方面发挥重要作用。

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本文引用的文献

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Observation of critical phenomena in a protein-water solution.蛋白质水溶液中临界现象的观测
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