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Structural basis of eye lens transparency: light scattering by concentrated solutions of bovine alpha-crystallin proteins.

机译:晶状体透明度的结构基础:牛α-晶状体蛋白浓缩溶液的光散射。

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摘要

Short range order of the crystallins does account for the transparency of the eye lens. To explain the solution structure of this highly concentrated protein solution on a quantitative basis, the hydrodynamic structure and the interparticle interactions of the proteins have to be known. For that purpose, the light scattering of concentrated solutions of alpha-crystallin has been studied. Starting from the detailed knowledge of the solution parameters of alpha-crystallin in diluted solutions, the structure of concentrated solutions up to 360 mg/ml has been studied using light scattering. Our results indicate that subtle changes in the macromolecular structure such as optical anisotropy or structural asymmetry for part of the alpha-crystallins, which results in solute light-scattering heterogeneity, can dramatically increase the light scattering by the alpha-crystallins and cause solution opacity.
机译:晶状体的短程有序确实说明了眼镜片的透明度。为了定量地解释这种高度浓缩的蛋白质溶液的溶液结构,必须知道蛋白质的流体动力学结构和颗粒间的相互作用。为此,已经研究了α-晶状体蛋白浓缩溶液的光散射。从对α-结晶蛋白在稀释溶液中的溶液参数的详细了解开始,已使用光散射研究了高达360 mg / ml的浓缩溶液的结构。我们的结果表明,大分子结构的细微变化,例如部分α-晶状体蛋白的光学各向异性或结构不对称性,会导致溶质的光散射异质性,会显着增加α-晶状体蛋白的光散射并导致溶液不透明。

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