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首页> 外文期刊>Journal of Bioinformatics and Sequence Analysis >In silico analysis of amino acid sequences in relation to specificity and physiochemical properties of some aliphatic amidases and kynurenine formamidases
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In silico analysis of amino acid sequences in relation to specificity and physiochemical properties of some aliphatic amidases and kynurenine formamidases

机译:计算机分析氨基酸序列与某些脂肪族酰胺酶和犬尿氨酸甲酰胺酶的特异性和理化性质的关系

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摘要

Computational analysis of amino acid sequences of aliphatic amidases and kynurenine formamidases?for some of their physiochemical properties and their substrate specificity has been done. Multiple?sequence alignment of 18 amino acid sequences shows a clear difference between the two classes of?aminohydrolases. Statistical analysis indicated a clear distinction between aliphatic amidases and?kynurenine formamidases. The kynurenine formamidases and aliphatic amidases mainly differ in the?total number of amino acid and composition of amino acid. Catalytic triad was found to be conserved?and difference in amino acids makes them substrate specific. The results of the present work will be?quite useful in prediction and selection of kynurenine formamidases/aliphatic amidases either from?reported amidases or from the large number of sequenced microbial genome.
机译:对脂肪族酰胺酶和犬尿氨酸甲酰胺酶的氨基酸序列进行了一些理化性质和底物特异性的计算分析。 18个氨基酸序列的多序列比对显示两类β-氨基水解酶之间存在明显差异。统计分析表明脂族酰胺酶和犬尿氨酸甲酰胺酶之间有明显区别。犬尿氨酸甲酰胺酶和脂族酰胺酶的主要区别在于氨基酸总数和氨基酸组成。发现催化三联体是保守的,氨基酸的差异使它们具有底物特异性。本工作的结果对于从报告的酰胺酶或从大量测序的微生物基因组中预测和选择犬尿氨酸甲酰胺酶/脂肪族酰胺酶非常有用。

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