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TIM Barrel Protein Structure Classification Using Alignment Approach and Best Hit Strategy

机译:使用对准方法和最佳击中策略的Tim桶蛋白质结构分类

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The classification of protein structures is essential for their function determination in bioinformatics. It has been estimated that around 10% of all known enzymes have TIM barrel domains from the Structural Classification of Proteins (SCOP) database. With its high sequence variation and diverse functionalities, TIM barrel protein becomes to be an attractive target for protein engineering and for the evolution study. Hence, in this paper, an alignment approach with the best hit strategy is proposed to classify the TIM barrel protein structure in terms of superfamily and family levels in the SCOP. This work is also used to do the classification for class level in the Enzyme nomenclature (ENZYME) database. Two testing data sets, TIM40D and TIM95D, both are used to evaluate this approach. The resulting classification has an overall prediction accuracy rate of 90.3% for the superfamily level in the SCOP, 89.5% for the family level in the SCOP and 70.1% for the class level in the ENZYME. These results demonstrate that the alignment approach with the best hit strategy is a simple and viable method for the TIM barrel protein structure classification, even only has the amino acid sequences information.
机译:蛋白质结构的分类对于生物信息学中的功能测定至关重要。据估计,大约10%的所有已知的酶都有来自蛋白质(SCOP)数据库的结构分类的Tim桶结构域。凭借其高序列变异和多样性功能,Tim桶蛋白成为蛋白质工程和进化研究的有吸引力的目标。因此,在本文中,提出了一种具有最佳策略策略的对准方法,以在SCOP中的超家族和家庭水平方面对Tim桶蛋白质结构进行分类。该工作还用于对酶命名(酶)数据库中的类别水平进行分类。两个测试数据集,TIM40D和TIM95D都用于评估这种方法。由此产生的分类具有90.3%的总体预测精度,在SCOP中的超家族水平,SCOP中的家庭水平的89.5%,酶中课程的70.1%。这些结果表明,具有最佳打击策略的对准方法是Tim桶蛋白质结构分类的简单且可行的方法,甚至只有氨基酸序列信息。

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