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Preparation of D-amino acids by enzymatic kinetic resolution using a mutant of penicillin-G acylase from E. coli

机译:使用来自大肠杆菌的青霉素-G酰基转移酶的突变体通过酶促动力学拆分制备D-氨基酸

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摘要

We have demonstrated for the first time that D-glutamine (D-Gln) and D-glutamic acid (D-Glu) can be efficiently obtained in high ee (97% and 90%, respectively) by enzymatic kinetic resolution of D,L L-Gln and D,L L-Glu. This was achieved by enantioselective conversion of the L-enantiomers to their N-phenylacetyl derivatives in aqueous solution, using a mutant of penicillin-G acylase (PGA) from E. coli and phenylacetic acid methylester as the acyl donor. Kinetic modeling studies suggest that the high ee values obtained are both due to a strong enantiopreference for the L-amino acid in the deacylation step of the covalent enzyme intermediate, as well as to completeness of conversion that is transiently obtained as a result of the distinct preference of the mutant PGA for phenylacetic acid methylester over the N-phenylacetyl-L-amino acid product. For the other amino acids tested (Asn, Asp, and Ser), the highest ee values that were obtained for the remaining D-enantiomer are moderate (50–80%) because of lower enantioselectivity in the enzyme deacylation step and due to less complete conversion of the L-amino acid caused by competition for the active site between the acyl donor and the N-phenylacetyl-L-amino acid that is produced. The results demonstrate that the mutated PGA has great potential for the production of optically active D-amino acids by kinetic resolution.
机译:我们首次证明,通过D,L的酶促动力学拆分,可以在高ee(分别为97%和90%)中有效地获得D-谷氨酰胺(D-Gln)和D-谷氨酸(D-Glu)。 L-Gln和D,L L-Glu。这是通过使用来自大肠杆菌的青霉素-G酰基转移酶(PGA)突变体和苯基乙酸甲酯作为酰基供体,在水溶液中将L对映异构体对映体选择性转化为N-苯基乙酰基衍生物来实现的。动力学建模研究表明,获得的高ee值既是由于在共价酶中间体的去酰化步骤中对L-氨基酸的强烈对映异构性所致,也归因于由于相对于N-苯基乙酰基-L-氨基酸产物,突变体PGA对苯乙酸甲酯的偏好性更高。对于其他测试的氨基酸(Asn,Asp和Ser),由于酶脱酰步骤中的对映选择性较低且不完全,剩余D-对映体获得的最高ee值为中等(50-80%)。酰基供体与所产生的N-苯基乙酰基-L-氨基酸之间的活性位点竞争引起的L-氨基酸的转化。结果表明,通过动力学拆分,突变的PGA具有生产旋光D-氨基酸的巨大潜力。

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