The structural study of membrane proteins by electron crystallography

Yoshinori Fujiyoshi
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引用次数: 200

Abstract

A high-resolution electron cryo-microscope equipped with a top-entry specimen stage has been refined by modifying a previously described superfluid helium stage. Instruments equipped with such a cryo-stage achieve a resolution of better than 2.0 Å and have proved extremely powerful in the high-resolution structure analysis of membrane proteins. Improvement of the electron microscopic system in combination with improved specimen preparation techniques allowed the structure of bR to be analyzed to a resolution of 3.0 Å. The 3D structure of bR, especially the surface features, revealed the structural basis for the efficient guidance of protons to the entrance of the transmembrane channel. Based on the characteristic difference of the atomic scattering factors for electrons of ionized atoms versus neutral atoms as well as the data analysis, charged and uncharged amino acid residues could be discriminated. Thus, electron crystallography is providing us with new and exciting insights into the structure of membrane proteins because it not only enables us to determine the structure of a membrane protein, but allows us to study its interaction with the surrounding lipid molecules and to determine its ionization state.

膜蛋白结构的电子晶体学研究
通过改进先前描述的超流氦级,改进了配备顶部进入样品级的高分辨率电子冷冻显微镜。配备这种低温级的仪器的分辨率优于2.0 Å,并且在膜蛋白的高分辨率结构分析中被证明是非常强大的。电子显微系统的改进与改进的样品制备技术相结合,使bR的结构分析达到3.0 Å的分辨率。bR的三维结构,特别是表面特征,揭示了质子有效引导到跨膜通道入口的结构基础。根据电离原子与中性原子电子的原子散射因子的特征差异以及数据分析,可以区分出带电和不带电的氨基酸残基。因此,电子晶体学为我们提供了关于膜蛋白结构的新的和令人兴奋的见解,因为它不仅使我们能够确定膜蛋白的结构,而且使我们能够研究其与周围脂质分子的相互作用并确定其电离状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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