首页> 外文期刊>Journal of Agricultural and Food Chemistry >Production of N-Acetyl-D-neuraminic Acid by Whole Cells Expressing Bacteroides thetaiotaomicron N-Acetyl-D-glucosamine 2-Epinnerase and Escherichia coli N-Acetyl-D-neuraminic Acid Aldolase
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Production of N-Acetyl-D-neuraminic Acid by Whole Cells Expressing Bacteroides thetaiotaomicron N-Acetyl-D-glucosamine 2-Epinnerase and Escherichia coli N-Acetyl-D-neuraminic Acid Aldolase

机译:通过表达拟菌的全细胞产生N-乙酰基-D-神经酸酐ThetaiOMicron N-乙酰-D-葡糖胺2-Epinnerase和大肠杆菌N-乙酰基-D-神经蛋白酸醛糖酶

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摘要

N-Acetyl-D-neuraminic acid (Neu5Ac) is a potential baby nutrient and the key precursor of antiflu medicine Zanamivir. The Neu5Ac chemoenzymatic synthesis consists of N-acetyl-D-glucosamine epimerase (AGE)-catalyzed epimerization of N-acetyl-D-glucosamine (GlcNAc) to N-acetyl-D-mannosamine (ManNAc) and aldolase-catalyzed condensation between ManNAc and pyruvate. Herein, we cloned and characterized BT0453, a novel AGE, from a human gut symbiont Bacteroides thetaiotaomicron. BT0453 shows the highest soluble fraction among the AGEs tested. With GlcNAc and sodium pyruvate as substrates, Neu5Ac production by coupling whole cells expressing BT0453 and Escherichia coli N-acetyl-D-neuraminic acid aldolase was explored. After 36 h, a 53.6% molar yield, 3.6 g L(-1)h(-1) productivity and 42.9 mM titer of Neu5Ac were obtained. Furthermore, for the first time, the T7-BT0453-T7-nanA polycistronic unit was integrated into the E. coli genome, generating a chromosome-based biotransformation system. BT0453 protein engineering and metabolic engineering studies hold potential for the industrial production of Neu5Ac.
机译:N-乙酰-D-神经氨酸(Neu5Ac)是一种潜在的婴儿营养素和抗真菌Zanamivir的关键前体。 Neu5ac化学酶合成由N-乙酰基-D-葡糖胺映像(年龄)组成 - 催化N-乙酰基-D-葡糖胺(GLCNAc)的催化在N-乙酰基-D-甘露胶(GLCNAc)和Mannac之间的aldolase催化的凝结和丙酮酸。在此,我们克隆并表征了一种新的年龄,从人体肠系中的肠系中的肠道霉菌。 BT0453显示了所测试的年龄中可溶性的最高级分。通过GlcNAc和丙酮酸钠作为底物,通过偶联表达BT0453和大肠杆菌N-乙酰基-D-神经氨酸醛糖酶的全细胞产生Neu5ac产生。得到36小时后,获得53.6%的摩尔产率,3.6g L(-1)H(-1)生产率和42.9mm滴度的Neu5ac。此外,首次将T7-BT0453-T7-NANA多函数单元集成到大肠杆菌基因组中,产生基于染色体的生物转换系统。 BT0453蛋白质工程和代谢工程研究持有Neu5ac工业生产的潜力。

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