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Three-way decomposition of a complete 3D N-15-NOESY-HSQC

机译:完整3D N-15-NOESY-HSQC的三向分解

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Three-way decomposition is applied for the structural analysis of a complete three-dimensional N-15-NOESY-HSQC of the 128 residues long protein azurin. The procedure presented includes decomposition using the software MUNIN, providing an initial characterization of the complete spectrum by 355 components. This is followed by post-processing yielding a final list of 149 components, 123 of which characterize 1859 NOE peaks from backbone N-H groups. Components from three-way decomposition are defined as direct products of one-dimensional shapes along the three dimensions. Thus, a complete set of distance constraints from this spectrum is obtained by one-dimensional peak picking of the shapes along the NOE dimension. Correctness and completeness of this set of NOEs are tested for all backbone amide groups against both an independent peak picking algorithm and the three-dimensional crystal structure of azurin, and a coincidence of about 95% is observed. Automated 'demixing' of components that are 'mixed' in a complex manner due to overlap of the HN and/or N-15 frequencies is illustrated. [References: 19]
机译:三向分解用于对128个残基长蛋白天青蛋白的完整三维N-15-NOESY-HSQC进行结构分析。所介绍的过程包括使用MUNIN软件进行分解,并通过355个组件对整个光谱进行初步表征。随后进行后处理,最终得到149个组分的列表,其中123个组分表征了骨架N-H组的1859个NOE峰。来自三向分解的分量被定义为沿着三个维度的一维形状的直接乘积。因此,通过沿NOE方向对形状进行一维峰拾取,可以获得与该光谱的距离约束的完整集合。针对所有主链酰胺基团,针对独立的峰选择算法和天青蛋白的三维晶体结构,测试了这组NOE的正确性和完整性,观察到的重合度约为95%。示出了由于HN和/或N-15频率的重叠而以复杂的方式“混合”的组分的自动“脱脂”。 [参考:19]

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