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High Conservation of Amino Acids with Anomalous Protonation Behavior

机译:具有高度质子化行为的氨基酸的高保守性

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The determination of a protein's biochemical function from its 3D structure has proved more difficult than anticipated for structural genomics proteins, most of which are of unknown or uncertain function. Functional annotations typically have been assigned using the closest sequence or structure match, a practice that has resulted in large numbers of misannotated proteins. Recently it was reported that computed protonation properties can be used to predict the residues with catalytic and binding activity, thus providing clues about the function of the protein. We show that residues with anomalous computed protonation behavior constitute a small fraction of the protein's highly conserved residues. Results for a test set of 61 proteins reveal that the average conservation scores are high for residues with unusual protonation behavior, even for many not annotated as functionally important in the literature. Two enzymes, protein tyrosine phosphatase from Yersinia enterocolitica and glucosamine-6-phosphate deaminase from Escherichia coli, are described in detail as examples to illustrate the relationship between anomalous protonation behavior and conservation. We conclude that the residues with anomalous protonation behavior are generally highly conserved, but are fewer in number and more spatially localized than the set of all highly conserved residues in a given protein.
机译:事实证明,从蛋白质的3D结构确定蛋白质的生化功能比对结构基因组蛋白质所预期的要困难得多,其中大多数蛋白质的功能未知或不确定。通常使用最接近的序列或结构匹配来分配功能注释,这种做法已导致大量错误注释的蛋白质。最近,据报道,计算的质子化性质可用于预测具有催化和结合活性的残基,从而提供有关蛋白质功能的线索。我们表明,具有异常计算的质子化行为的残基构成蛋白质的高度保守残基的一小部分。测试一组61种蛋白质的结果表明,具有异常质子化行为的残基的平均保守评分很高,即使对于许多在文献中未标注为功能重要的残基也是如此。作为例子详细描述了两种酶,即小肠结肠炎耶尔森氏菌的蛋白酪氨酸磷酸酶和大肠埃希氏菌中的氨基葡萄糖-6-磷酸脱氨酶,以说明异常质子化行为与保守之间的关系。我们得出的结论是,具有异常质子化行为的残基通常高度保守,但与给定蛋白质中所有高度保守残基的集合相比,其数量较少且在空间上更局限。

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