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完整晶状体的小角X射线散射研究:晶状体蛋白组成和浓度对微观结构的影响。

Small-angle X-ray scattering studies of the intact eye lens: effect of crystallin composition and concentration on microstructure.

作者信息

Mirarefi Amir Y, Boutet Sébastien, Ramakrishnan Subramanian, Kiss Andor J, Cheng Chi-Hing C, Devries Arthur L, Robinson Ian K, Zukoski Charles F

机构信息

Center for Biophysics and Computational Biology in the Department of Chemical and Biomolecular Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Biochim Biophys Acta. 2010 Jun;1800(6):556-64. doi: 10.1016/j.bbagen.2010.02.004. Epub 2010 Feb 16.

Abstract

BACKGROUND

The cortex and nucleus of eye lenses are differentiated by both crystallin protein concentration and relative distribution of three major crystallins (alpha, beta, and gamma). Here, we explore the effects of composition and concentration of crystallins on the microstructure of the intact bovine lens (37 degrees C) along with several lenses from Antarctic fish (-2 degrees C) and subtropical bigeye tuna (18 degrees C).

METHODS

Our studies are based on small-angle X-ray scattering (SAXS) investigations of the intact lens slices where we study the effect of crystallin composition and concentration on microstructure.

RESULTS

We are able to distinguish the nuclear and cortical regions by the development of a characteristic peak in the intensity of scattered X-rays. For both the bovine and fish lenses, the peak corresponds to that expected for dense suspensions of alpha-crystallins.

CONCLUSIONS

The absence of the scattering peak in the nucleus indicates that there is no characteristic wavelength for density fluctuations in the nucleus although there is liquid-like order in the packing of the different crystallins. The loss in peak is due to increased polydispersity in the sizes of the crystallins and due to the packing of the smaller gamma-crystallins in the void space of alpha-crystallins.

GENERAL SIGNIFICANCE

Our results provide an understanding for the low turbidity of the eye lens that is a mixture of different proteins. This will inform design of optically transparent suspensions that can be used in a number of applications (e.g., artificial liquid lenses) or to better understand human diseases pathologies such as cataract.

摘要

背景

晶状体的皮质和核由晶状体蛋白浓度以及三种主要晶状体蛋白(α、β和γ)的相对分布来区分。在此,我们探究了晶状体蛋白的组成和浓度对完整牛晶状体(37摄氏度)以及几种南极鱼类晶状体(-2摄氏度)和亚热带大眼金枪鱼晶状体(18摄氏度)微观结构的影响。

方法

我们的研究基于对完整晶状体切片的小角X射线散射(SAXS)研究,在该研究中我们探究了晶状体蛋白组成和浓度对微观结构的影响。

结果

我们能够通过散射X射线强度中特征峰的出现来区分核区和皮质区。对于牛晶状体和鱼类晶状体,该峰均与α晶状体蛋白致密悬浮液预期的峰相对应。

结论

核区散射峰的缺失表明,尽管不同晶状体蛋白的堆积存在类液态有序性,但核区密度波动不存在特征波长。峰的消失是由于晶状体蛋白尺寸的多分散性增加,以及较小的γ晶状体蛋白填充到α晶状体蛋白的空隙中。

一般意义

我们的结果为作为不同蛋白质混合物的晶状体低浊度提供了一种理解。这将为可用于多种应用(例如人工液体晶状体)的光学透明悬浮液的设计提供信息,或者有助于更好地理解诸如白内障等人类疾病病理学。

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