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通过完整牛晶状体的拉曼光谱确定的晶状体微观蛋白质结构及白内障形成理论。

The microscopic protein structure of the lens with a theory for cataract formation as determined by Raman spectroscopy of intact bovine lenses.

作者信息

Schachar R A, Solin S A

出版信息

Invest Ophthalmol. 1975 May;14(5):380-96.

PMID:1126827
Abstract

Intact bovine lenses have been studied using the polarized Raman spectroscopic technique. A brief theoretical and experimental review of Raman spectroscopy is presented. From the dependence of the Raman depolarization ratio on the propagation direction of the incident radiation we have determined that the uniaxial qualities of the lens result from microscopic anisotropy and have established the quantitative positional correlation of specific chemical bonds with respect to the lens optic axis. In particular, the hydrogen bonded linear CONH groups of the antiparallel beta-pleated sheet are preferentially oriented in directions orthogonal to the lens optic axis. The Raman spectra of intact lenses do not exhibit bands at positions characteristic of either the alpha-helix or the random coil protein structure. The antiparallel beta-pleated sheet protein microstructure and the lens fiber cross-sectional macrostructure exhibit a remarkable similarity. This similarity may be causal and is consistent with the protein concentration of the lens, the birefringent properties observed by both Lenhard and Brewster, the CONH bond angle distribution with respect to the optic axis, and the lens anatomy. It is suggested that cortical cataracts are caused by fluctuations in protein orientational order.

摘要

已使用偏振拉曼光谱技术对完整的牛晶状体进行了研究。本文对拉曼光谱进行了简要的理论和实验综述。根据拉曼退偏比与入射辐射传播方向的关系,我们确定晶状体的单轴特性源于微观各向异性,并建立了特定化学键相对于晶状体光轴的定量位置相关性。特别是,反平行β折叠片层中氢键连接的线性CONH基团优先沿与晶状体光轴正交的方向排列。完整晶状体的拉曼光谱在α螺旋或无规卷曲蛋白质结构的特征位置均未显示出谱带。反平行β折叠片层蛋白质微观结构与晶状体纤维横截面宏观结构表现出显著的相似性。这种相似性可能存在因果关系,并且与晶状体的蛋白质浓度、Lenhard和Brewster观察到的双折射特性、CONH键角相对于光轴的分布以及晶状体解剖结构一致。有人提出皮质性白内障是由蛋白质取向顺序的波动引起的。

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