首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >DIRECT PHASE DETERMINATION IN PROTEIN ELECTRON CRYSTALLOGRAPHY - THE PSEUDO-ATOM APPROXIMATION
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DIRECT PHASE DETERMINATION IN PROTEIN ELECTRON CRYSTALLOGRAPHY - THE PSEUDO-ATOM APPROXIMATION

机译:蛋白质电子晶体学中的直接相测定-伪原子近似

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摘要

The crystal structure of halorhodopsin is determined directly in its centrosymmetric projection using 6.0-Angstrom-resolution electron diffraction intensities, without including any previous phase information from the Fourier transform of electron micrographs, The potential distribution in the projection is assumed a priori to be an assembly of globular densities. By an appropriate dimensional re-scaling, these ''globs'' are then assumed to be pseudo-atoms for normalization of the observed structure factors. After this treatment, the structure is determined directly by conventional direct methods, followed by Fourier refinement, leading to a mean phase deviation of only 20 degrees (from the values originally found from the image transform) for the 45 most intense reflections. [References: 24]
机译:卤代视紫红质的晶体结构是使用6.0埃分辨率的电子衍射强度直接在其中心对称投影中确定的,而没有包括来自电子显微照片的傅立叶变换的任何先前相位信息。该投影中的电势分布被假定为先验组装球状密度。通过适当的尺寸重定比例,然后将这些“球形”假定为伪原子,用于标准化观察到的结构因子。经过这种处理后,可以通过常规直接方法直接确定结构,然后进行傅立叶精修,从而导致45个最强烈反射的平均相位偏差仅为20度(与原始从图像变换得出的值相比)。 [参考:24]

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