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The production of l- and d-phenylalanines using engineered phenylalanine ammonia lyases from Petroselinum crispum

机译:使用来自Petroselinum Crispum的工程化苯丙氨酸氨酶的L-和D-苯丙氨酸的生产

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The biocatalytic synthesis of L- and D-phenylalanine analogues of high synthetic value have been developed using as biocatalysts mutant variants of phenylalanine ammonia lyase from Petroselinum crispum (PcPAL), specifically tailored towards mono-substituted phenylalanine and cinnamic acid substrates. The catalytic performance of the engineered PcPAL variants was optimized within the ammonia elimination and ammonia addition reactions, focusing on the effect of substrate concentration, biocatalyst:substrate ratio, reaction buffer and reaction time, on the conversion and enantiomeric excess values. The optimal conditions provided an efficient preparative scale biocatalytic procedure of valuable phenylalanines, such as (S)-m-methoxyphenylalanine (Y?=?40%, ee??99%), (S)-p-bromophenylalanine (Y?=?82%, ee??99%), (S)-m-(trifluoromethyl)phenylalanine (Y?=?26%, ee??99%), (R)-p-methylphenylalanine, (Y?=?49%, ee?=?95%) and (R)-m-(trifluoromethyl)phenylalanine (Y?=?34%, ee?=?93%).
机译:使用来自Petroselinum Crispum(PCPAL)的苯丙氨酸氨裂解酶的生物催化剂突变体变体的高合成值的生物催化合成的高合成值的类似物。特异性地定制朝向单取代的苯丙氨酸和肉桂酸基材。在氨的消除和氨添加反应中优化了工程化的PCPAL变体的催化性能,重点是底物浓度,生物催化剂:基板比,反应缓冲液和反应时间的影响,对转化和对映体过量值。最佳条件提供了有效的苯丙氨酸的高效制备尺度生物催化方法,例如(S)-M-甲氧基苯基丙氨酸(Yα= 40%,EE?>β9%),(S)-P-溴苯基丙氨酸(Y?= ?82%,ee?>?99%),(S)-M-(三氟甲基)苯丙氨酸(Yα= 26%,EEαΩ·99%),(R)-P-甲基苯丙胺,(Y?= ?49%,ee?=?95%)和(R)-M-(三氟甲基)苯丙氨酸(Yα= 34%,EE?= 93%)。

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