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来自可变孪晶数据集的新型构象下钙调蛋白-肽复合物结构的解析。

Solution of the structure of a calmodulin-peptide complex in a novel configuration from a variably twinned data set.

作者信息

Keller Jacob Pearson

机构信息

Janelia Research Campus, 19700 Helix Drive, Ashburn, VA 20147, USA.

出版信息

Acta Crystallogr D Struct Biol. 2017 Jan 1;73(Pt 1):22-31. doi: 10.1107/S2059798316019318.

Abstract

Structure determination of conformationally variable proteins can prove challenging even when many possible molecular-replacement (MR) search models of high sequence similarity are available. Calmodulin (CaM) is perhaps the best-studied archetype of these flexible proteins: while there are currently ∼450 structures of significant sequence similarity available in the Protein Data Bank (PDB), novel conformations of CaM and complexes thereof continue to be reported. Here, the details of the solution of a novel peptide-CaM complex structure by MR are presented, in which only one MR solution of marginal quality was found despite the use of 120 different search models, an exclusivity enhanced by the presence of a high degree of hemihedral twinning (overall refined twin fraction = 0.43). Ambiguities in the initial MR electron-density maps were overcome by using MR-SAD: phases from the MR partial model were used to identify weak anomalous scatterers (calcium, sulfur and chloride), which were in turn used to improve the phases, automatically rebuild the structure and resolve sequence ambiguities. Retrospective analysis of consecutive wedges of the original data sets showed twin fractions ranging from 0.32 to 0.55, suggesting that the data sets were variably twinned. Despite these idiosyncrasies and obstacles, the data themselves and the final model were of high quality and indeed showed a novel, nearly right-angled conformation of the bound peptide.

摘要

即使有许多序列相似性高的可能分子置换(MR)搜索模型,确定构象可变蛋白的结构也可能具有挑战性。钙调蛋白(CaM)可能是这类柔性蛋白中研究得最透彻的典型:虽然目前蛋白质数据库(PDB)中有约450个序列相似性高的结构,但CaM及其复合物的新构象仍不断被报道。本文介绍了通过MR解析一种新型肽 - CaM复合物结构的详细过程,尽管使用了120种不同的搜索模型,但仅发现了一个质量一般的MR解,由于存在高度的半面孪晶(整体精修孪晶分数 = 0.43),这种唯一性得到了增强。通过使用MR-SAD克服了初始MR电子密度图中的模糊性:来自MR部分模型的相位用于识别弱反常散射体(钙、硫和氯),这些散射体又被用于改善相位、自动重建结构并解决序列模糊性。对原始数据集连续楔形区域的回顾性分析表明,孪晶分数范围为0.32至0.55,表明数据集存在不同程度的孪晶。尽管存在这些特性和障碍,但数据本身和最终模型质量很高,确实显示了结合肽的一种新的、近乎直角的构象。

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