Institute of Organic Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, 01-224 Warsaw, Poland.
Molecules. 2022 Jul 6;27(14):4346. doi: 10.3390/molecules27144346.
Chiral amines and alcohols are synthons of numerous pharmaceutically-relevant compounds. The previously developed enzymatic kinetic resolution approaches utilize a chiral racemic molecule and achiral acyl donor (or acyl acceptor). Thus, only one enantiodivergent step of the catalytic cycle is engaged, which does not fully exploit the enzyme’s abilities. The first carbonate-mediated example of simultaneous double chemoselective kinetic resolution of chiral amines and alcohols is described. Herein, we established a biocatalytic approach towards four optically-pure compounds (>99% ee, Enantioselectivity: E > 200) via double enzymatic kinetic resolution, engaging chiral organic carbonates as acyl donors. High enantioselectivity was ensured by extraordinary chemoselectivity in lipase-catalyzed formation of unsymmetrical organic carbonates and engaged in a process applicable for the synthesis of enantiopure organic precursors of valuable compounds. This study focused not only on preparative synthesis, but additionally the catalytic mechanism was discussed and the clear impact of this rarely observed carbonate-derived acyl enzyme was shown. The presented protocol is characterized by atom efficiency, acyl donor sustainability, easy acyl group removal, mild reaction conditions, and biocatalyst recyclability, which significantly decreases the cost of the reported process.
手性胺和醇是许多药物相关化合物的合成子。以前开发的酶促动力学拆分方法利用手性外消旋分子和非手性酰基供体(或酰基受体)。因此,只有催化循环的一个对映体发散步骤被涉及,这不能充分利用酶的能力。本文首次描述了同时对映选择性动力学拆分手性胺和醇的碳酸酯介导的实例。在此,我们通过双酶促动力学拆分,建立了一种生物催化方法,利用手性碳酸酯作为酰基供体,得到四种光学纯化合物(>99%ee,对映选择性:E > 200)。高对映选择性通过脂肪酶催化形成不对称有机碳酸酯中的非凡化学选择性来保证,并适用于有价值化合物的手性有机前体的合成。这项研究不仅关注于制备合成,还讨论了催化机制,并展示了这种很少观察到的碳酸酯衍生酰基酶的明显影响。所提出的方案具有原子效率、酰基供体可持续性、易于去除酰基基团、温和的反应条件和生物催化剂可回收性,这显著降低了报告过程的成本。