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Asymmetric synthesis of a high added value chiral amine using immobilized ω-transaminases

机译:固定化ω-转氨酶不对称合成高附加值手性胺

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摘要

Chiral N-heterocyclic molecules and in particular compounds with an amino functional group such as 3-aminopiperidine are valuable intermediates for the production of a large number of bioactive compounds with pharmacological properties. In this paper, the synthesis of both enantiomers of 3-amino-1-Boc-piperidine by amination of the prochiral precursor 1-Boc-3-piperidone using immobilized ω-transaminases (TAs-IMB), isopropylamine as amine donor and pyridoxal-5’-phosphate (PLP) as cofactor is described. Compared to other methods, the present approach affords the target compound in just one step with high yield and high enantiomeric excess starting from a commercial substrate. The reaction was carried out by using different commercially available immobilized enzymes, evaluating the catalytic activity and the enantioselectivity under different experimental conditions. Re-use of the most efficient enzyme was performed both in batch and in a semi-continuous system. The selected biocatalyst showed good stability under the reaction conditions providing consistent results in terms of conversion and enantiomeric excess after several cycles. The reported results may be of practical interest in view of the development of this sustainable approach to an industrial scale.
机译:手性N-杂环分子,尤其是具有氨基官能团的化合物,例如3-氨基哌啶是有价值的中间体,用于生产大量具有药理特性的生物活性化合物。在本文中,通过固定化的ω-转氨酶(TAs-IMB),异丙胺作为胺供体和吡ido醛-吡咯烷酮-前手性前体1-Boc-3-哌啶酮的胺化反应,合成了3-氨基-1-Boc-哌啶的两种对映体。描述了作为辅助因子的5'-磷酸(PLP)。与其他方法相比,本方法仅需一步即可从商业底物开始以高收率和高对映体过量提供目标化合物。通过使用不同的市售固定化酶进行反应,评估在不同实验条件下的催化活性和对映选择性。分批和半连续系统都重复使用了最有效的酶。所选择的生物催化剂在反应条件下显示出良好的稳定性,在几个循环后就转化率和对映体过量而言提供了一致的结果。鉴于将这种可持续方法发展到工业规模,报告的结果可能具有实际意义。

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