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3D representations of amino acids—applications to protein sequence comparison and classification

机译:氨基酸的3D表示法在蛋白质序列比较和分类中的应用

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摘要

The amino acid sequence of a protein is the key to understanding its structure and ultimately its function in the cell. This paper addresses the fundamental issue of encoding amino acids in ways that the representation of such a protein sequence facilitates the decoding of its information content. We show that a feature-based representation in a three-dimensional (3D) space derived from amino acid substitution matrices provides an adequate representation that can be used for direct comparison of protein sequences based on geometry. We measure the performance of such a representation in the context of the protein structural fold prediction problem. We compare the results of classifying different sets of proteins belonging to distinct structural folds against classifications of the same proteins obtained from sequence alone or directly from structural information. We find that sequence alone performs poorly as a structure classifier. We show in contrast that the use of the three dimensional representation of the sequences significantly improves the classification accuracy. We conclude with a discussion of the current limitations of such a representation and with a description of potential improvements.
机译:蛋白质的氨基酸序列是了解其结构以及最终在细胞中发挥功能的关键。本文解决了编码氨基酸的基本问题,即这种蛋白质序列的表示有助于其信息含量的解码。我们表明,在基于氨基酸替换矩阵的三维(3D)空间中基于特征的表示形式提供了可用于基于几何结构直接比较蛋白质序列的足够表示形式。我们在蛋白质结构折叠预测问题的背景下测量这种表示的性能。我们比较了将属于不同结构折叠的不同蛋白质组的结果与单独从序列中或直接从结构信息中获得的相同蛋白质的分类进行比较的结果。我们发现,仅序列作为结构分类器的性能较差。相反,我们表明,序列的三维表示的使用显着提高了分类准确性。最后,我们讨论了这种表示形式的当前局限性,并描述了可能的改进。

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