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首页> 外文期刊>Acta crystallographica.Section D. Biological crystallography >The use of low-resolution phasing followed by phase extension from 7.6 to 2.5 A resolution with noncrystallographic symmetry to solve the structure of a bacteriophage capsid protein.
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The use of low-resolution phasing followed by phase extension from 7.6 to 2.5 A resolution with noncrystallographic symmetry to solve the structure of a bacteriophage capsid protein.

机译:使用低分辨率逐步紧随其后阶段扩展从7.6到2.5的决议noncrystallographic对称来解决噬菌体衣壳蛋白的结构。

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摘要

P2, the major capsid protein of bacteriophage PM2, adopts the double beta-barrel fold characteristic of the PRD1-adenoviral lineage. The 2.5 A resolution X-ray data obtained by analysis of the two major lattices of a multiple crystal of P2 were phased by molecular replacement, using as a search model structure factors to 7.6 A resolution obtained from electron density cut from the map of the entire PM2 virion. Phase extension to 2.5 A resolution used solely sixfold cycling averaging and solvent flattening. This represents an atypical example of an oligomeric protein for which the structure has been determined at high resolution by bootstrapping from low-resolution initial phases.
机译:P2,噬菌体PM2的主要衣壳蛋白,采用双beta-barrel褶皱的特点PRD1-adenoviral血统。分辨率的分析获得的x射线数据两个主要的P2的多个晶体的晶格被分子逐步更换,使用作为一个7.6搜索模型结构因素决议从电子密度降低从地图上整个PM2的病毒粒子。扩展到2.5决议仅6倍自行车平均和溶剂压扁。表示一个寡聚的典型例子蛋白质的结构在高分辨率取决于引导从低分辨率的初始阶段。

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