利用氨基酸分型提高核磁共振结构分配的准确性

H. Erdogan, M. Apaydin
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引用次数: 2

摘要

核磁共振波谱是研究溶液中蛋白质结构的一种重要的实验技术。核磁共振蛋白结构测定的一个重要挑战是核磁共振峰与相应核的分配。在基于结构的分配(SBA)中,目的是在同源蛋白的帮助下进行分配。NVR- bip是一种利用NVR评分函数和二进制整数规划来解决SBA问题的工具。在这项工作中,我们介绍了一种利用氨基酸分型来提高NVR-BIP分配精度的方法。我们使用CRAACK来获取C、N和H原子的化学位移,并返回可能的氨基酸及其置信度分数。我们获得了更高的分配精度,我们的结果显示了整合氨基酸分型与NVR的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using amino acid typing to improve the accuracy of NMR structure based assignments
Nuclear Magnetic Resonance (NMR1) spectroscopy is an important experimental technique that allows one to study protein structure in solution. An important challenge in NMR protein structure determination is the assignment of NMR peaks to corresponding nuclei. In structure-based assignment (SBA), the aim is to perform the assignments with the help of a homologous protein. NVR-BIP is a tool that uses Nuclear Vector Replacement's (NVR) scoring function and binary integer programming to solve SBA problem. In this work, we introduce a method to improve NVR-BIP's assignment accuracy with amino acid typing. We use CRAACK that takes the chemical shifts of C, N and H atoms and returns the possible amino acids along with their confidence scores. We obtain improved assignment accuracies and our results show the effectiveness of integrating amino acid typing with NVR.
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