Automated protein NMR resonance assignments.

Xiang Wan, Dong Xu, Carolyn M Slupsky, Guohui Lin
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Abstract

NMR resonance peak assignment is one of the key steps in solving an NMR protein structure. The assignment process links resonance peaks to individual residues of the target protein sequence, providing the prerequisite for establishing intra- and inter-residue spatial relationships between atoms. The assignment process is tedious and time-consuming, which could take many weeks. Though there exist a number of computer programs to assist the assignment process, many NMR labs are still doing the assignments manually to ensure quality. This paper presents (1) a new scoring system for mapping spin systems to residues, (2) an automated adjacency information extraction procedure from NMR spectra, and (3) a very fast assignment algorithm based on our previous proposed greedy filtering method and a maximum matching algorithm to automate the assignment process. The computational tests on 70 instances of (pseudo) experimental NMR data of 14 proteins demonstrate that the new score scheme has much better discerning power with the aid of adjacency information between spin systems simulated across various NMR spectra. Typically, with automated extraction of adjacency information, our method achieves nearly complete assignments for most of the proteins. The experiment shows very promising perspective that the fast automated assignment algorithm together with the new score scheme and automated adjacency extraction may be ready for practical use.

自动蛋白质核磁共振分配。
核磁共振峰分配是解核磁共振蛋白结构的关键步骤之一。分配过程将共振峰与目标蛋白序列的单个残基联系起来,为建立原子间残基内和残基间的空间关系提供了先决条件。作业过程既乏味又耗时,可能要花好几个星期。虽然有许多计算机程序来协助分配过程,但许多核磁共振实验室仍然手工完成分配以确保质量。本文提出了(1)一种新的自旋系统映射到残基的评分系统,(2)一种自动从核磁共振光谱中提取邻接信息的方法,(3)一种基于我们之前提出的贪婪滤波方法的快速分配算法和一种自动分配过程的最大匹配算法。对14种蛋白质的70例(伪)实验核磁共振数据的计算测试表明,利用不同核磁共振谱模拟的自旋系统之间的邻接信息,新评分方案具有较好的识别能力。通常,通过自动提取邻接信息,我们的方法几乎可以完成大多数蛋白质的分配。实验结果表明,快速自动分配算法结合新的评分方案和自动邻接提取可能已经准备好实际应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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