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三种不同介质中捕光叶绿素a/b蛋白复合体的高分辨率电子晶体学研究

High-resolution electron crystallography of light-harvesting chlorophyll a/b-protein complex in three different media.

作者信息

Wang D N, Kühlbrandt W

机构信息

European Molecular Biology Laboratory, Germany.

出版信息

J Mol Biol. 1991 Feb 20;217(4):691-9. doi: 10.1016/0022-2836(91)90526-c.

Abstract

Large two-dimensional crystals of the light-harvesting chlorophyll a/b-protein complex (LHC-II) from the photosynthetic membrane of pea chloroplasts were grown by a new method from detergent solution. The structure of these crystals was examined by electron crystallography, using three different media to preserve high-resolution detail: vitrified water, glucose and tannin. The crystals diffracted electrons to at least 3.2 A resolution in all three media. R-factors between the three data sets of electron diffraction amplitudes ranged from 6.4% to 14.3%. Fourier difference maps were generated and compared to a projection map of the complex at 3.4 A resolution. No significant differences were found, proving that all three media preserved the native structure of LHC-II at high resolution. The probability of recording high-quality electron diffraction patterns with tannin was 90%. With glucose and water this probability was lower by a factor of 10 to 20, suggesting that tannin may be preferable as a preserving medium for sensitive biological specimens.

摘要

通过一种新方法从豌豆叶绿体光合膜的捕光叶绿素a/b蛋白复合体(LHC-II)中生长出了大的二维晶体。利用电子晶体学,使用三种不同的介质来保留高分辨率细节,对这些晶体的结构进行了研究:玻璃化水、葡萄糖和单宁酸。在所有三种介质中,这些晶体的电子衍射分辨率至少达到3.2 Å。电子衍射振幅的三个数据集之间的R因子在6.4%至14.3%之间。生成了傅里叶差值图,并与该复合体在3.4 Å分辨率下的投影图进行了比较。未发现显著差异,证明所有三种介质都在高分辨率下保留了LHC-II的天然结构。使用单宁酸记录高质量电子衍射图案的概率为90%。使用葡萄糖和水时,这个概率要低10到20倍,这表明单宁酸可能更适合作为敏感生物标本的保存介质。

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