首页> 外文期刊>Journal of Agricultural and Food Chemistry >Characterization and Thermal Denaturation Kinetic Analysis of Recombinant L-Amino Acid Ester Hydrolase from Stenotrophomonas maltophilia
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Characterization and Thermal Denaturation Kinetic Analysis of Recombinant L-Amino Acid Ester Hydrolase from Stenotrophomonas maltophilia

机译:Stenotophomonas丙杆菌重组L-氨基酸酯水解酶的表征及热变性动力学分析

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摘要

Stenotrophomonas maltophilia HS1 exhibits L-amino acid ester hydrolase (SmAEH) activity, which can synthesize dipeptides such as Ile-Trp, Val-Gly, and Trp-His from the corresponding amino acid methyl esters and amino acids. The gene encoding SmAEH was cloned and expressed in Escherichia coli and was purified and characterized. SmAEH shared 77% sequence identity with a known amino acid ester hydrolase (AEH) from Xanthomonas citri, which belongs to a class of beta-lactam antibiotic acylases. The thermal stability of SmAEH was evaluated using various mathematical models to assess its industrial potential. First-order kinetics provided the best description for the inactivation of the enzyme over a temperature range of 35-50 degrees C. Decimal reduction time ranged from 212.76 to 3.44 min, with a z value of 8.06 degrees C, and the deactivation energy was 204.1 kJ mol(-1).
机译:Stenotrophomonas HS1表现出L-氨基酸酯水解酶(SMAEH)活性,其可以合成来自相应的氨基酸甲酯和氨基酸的偶极肽,例如ILE-TRP,VAL-GLY和TRP-HI-。 编码Smaeh的基因被克隆并在大肠杆菌中表达并纯化并表征。 Smaeh与Xanthomonas Citri的已知氨基酸酯水解酶(AEH)共用77%的序列同一性,其属于一类β-内酰胺抗生素酰基酶。 使用各种数学模型评估Smaeh的热稳定性,以评估其工业潜力。 一阶动力学提供了在35-50℃的温度范围内灭活酶的最佳描述。小数减少时间为212.76至3.44分钟,AZ值为8.06℃,停用能量为204.1 kJ mol(-1)。

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