结合低温电镜密度图和残馀接触蛋白结构预测-一个案例研究。

Maytha Alshammari, Jing He
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引用次数: 2

摘要

低温电子显微镜是大分子机器和膜相关复合物的主要结构测定技术。虽然原子结构已经直接从高分辨率的低温电镜密度图中确定,但目前用于中分辨率(5到10 Å)低温电镜图的结构确定方法受到结构模板可用性的限制。二级结构痕迹是从蛋白质的α-螺旋和β-链的低温电镜密度图中检测到的线。当结合从蛋白质序列中预测的二级结构序列片段时,可以生成一组α-示踪和β-示踪的可能拓扑结构。拓扑描述二级结构之间的整体折叠关系;这是推导相应原子结构的关键信息。我们提出了一种结合三种信息来源的蛋白质结构预测方法:从低温电镜密度图中检测到的二级结构痕迹,预测的二级结构序列片段,以及使用MULTICOM预测的氨基酸接触对。实例研究表明,利用MULTICOM的氨基酸接触预测提高了真实拓扑的排序。我们的观察表明,使用一组高度投票的二级结构接触对提高了在这种情况下进行的所有实验中的排名。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combine Cryo-EM Density Map and Residue Contact for Protein Structure Prediction - A Case Study.

Cryo-electron microscopy is a major structure determination technique for large molecular machines and membrane-associated complexes. Although atomic structures have been determined directly from cryo-EM density maps with high resolutions, current structure determination methods for medium resolution (5 to 10 Å) cryo-EM maps are limited by the availability of structure templates. Secondary structure traces are lines detected from a cryo-EM density map for α-helices and β-strands of a protein. When combined with secondary structure sequence segments predicted from a protein sequence, it is possible to generate a set of likely topologies of α-traces and β-sheet traces. A topology describes the overall folding relationship among secondary structures; it is a critical piece of information for deriving the corresponding atomic structure. We propose a method for protein structure prediction that combines three sources of information: the secondary structure traces detected from the cryo-EM density map, predicted secondary structure sequence segments, and amino acid contact pairs predicted using MULTICOM. A case study shows that using amino acid contact prediction from MULTICOM improves the ranking of the true topology. Our observations convey that using a small set of highly voted secondary structure contact pairs enhances the ranking in all experiments conducted for this case.

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