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恶臭假单胞菌NBRC 14164中四种新型独特ω-转氨酶用于外消旋胺和氨基醇的动力学拆分的表征

Characterization of Four New Distinct ω-Transaminases from Pseudomonas putida NBRC 14164 for Kinetic Resolution of Racemic Amines and Amino Alcohols.

作者信息

Wu Hua-Lei, Zhang Jian-Dong, Zhang Chao-Feng, Fan Xiao-Jun, Chang Hong-Hong, Wei Wen-Long

机构信息

Department of Biological and Pharmaceutical Engineering, College of Chemistry and Chemical Engineering, Taiyuan University of Technology, No.79 West Yingze Street, Taiyuan, Shanxi, 030024, China.

出版信息

Appl Biochem Biotechnol. 2017 Mar;181(3):972-985. doi: 10.1007/s12010-016-2263-9. Epub 2016 Oct 6.

Abstract

Four uncharacterized ω-transaminases (ωTAs) from Pseudomonas putida NBRC 14164 have been identified and cloned from the pool of fully sequenced genomes. The genes were functionally expressed in Escherichia coli BL21, and the enzymes were purified and characterized. Four TAs showed highly (S)-selective ωTA activity and converted (S)-α-methylbenzylamine and pyruvate to acetophenone and L-Ala. The maximum activity of cloned enzymes was in the pH range of 8.0-8.5 (Pp36420), 8.5-9.5 (Pp21050), 9.0-9.5 (PpspuC), and 9.5-10.5 (PpbauA), and the optimal temperatures were at 35 °C (Pp36420, Pp21050, and PpspuC) and 50 °C (PpbauA), respectively, with K of 161.3 mM (Pp21050), 136.7 mM (PpbauA), 398.5 mM (Pp36420), and 130.9 mM (PpspuC) and yielding a catalytic efficiency k /K of 0.015, 0.003, 0.012, and 0.023 mM s. Several racemic amines and amino alcohols were resolved by the cloned ωTAs; perfect conversions (48-50 %) were obtained by at least one enzyme, and the residual substrates were left with 97-99 % ee. Kinetic resolution of racemic phenylglycinol was done with PpspuC in a 100-mL scale. Enaniomeric excess of (S)-phenylglycinol reached 99 % with 45 % isolated yield. The high enantioselectivity and large substrate spectra of the cloned PpTAs showed an attractive potency for biotechnology application in production of chiral amines and amino alcohols.

摘要

已从恶臭假单胞菌NBRC 14164的全基因组序列库中鉴定并克隆出4种未表征的ω-转氨酶(ωTAs)。这些基因在大肠杆菌BL21中实现了功能表达,并且对酶进行了纯化和表征。4种转氨酶表现出高度的(S)-选择性ωTA活性,并将(S)-α-甲基苄胺和丙酮酸转化为苯乙酮和L-丙氨酸。克隆酶的最大活性处于pH范围8.0 - 8.5(Pp36420)、8.5 - 9.5(Pp21050)、9.0 - 9.5(PpspuC)和9.5 - 10.5(PpbauA),最佳温度分别为35℃(Pp36420、Pp21050和PpspuC)和50℃(PpbauA),其中Km分别为161.3 mM(Pp21050)、136.7 mM(PpbauA)、398.5 mM(Pp36420)和130.9 mM(PpspuC),催化效率kcat/Km为0.015、0.003、0.012和0.023 mM-1 s-1。克隆的ωTAs拆分了几种外消旋胺和氨基醇;至少一种酶实现了完全转化(48 - 50%),残留底物的对映体过量(ee)为97 - 99%。使用PpspuC在100 mL规模上对外消旋苯甘氨醇进行了动力学拆分。(S)-苯甘氨醇的对映体过量达到99%,分离产率为45%。克隆的PpTAs具有高对映选择性和较大的底物谱,在生产手性胺和氨基醇的生物技术应用中显示出诱人的潜力。

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