Applied Biocatalysis Unit Associated to IQAC-UAB-CSIC, Department of Chemical Engineering, School of Engineering, Universitat Autònoma de Barcelona, 08193 Bellaterra-Cerdanyola del Vallès, Catalonia, Spain.
Appl Microbiol Biotechnol. 2013 Aug;97(16):7173-83. doi: 10.1007/s00253-013-5011-x. Epub 2013 Jun 9.
In this work, the successful coupling of enzymatic oxidation and aldol addition reactions for the synthesis of a Cbz-aminopolyol from a Cbz-amino alcohol was achieved for the first time in a multienzymatic one-pot system. The two-step cascade reaction consisted of the oxidation of Cbz-ethanolamine to Cbz-glycinal catalyzed by chloroperoxidase from the fungus Caldariomyces fumago and aldol addition of dihydroxyacetone phosphate to Cbz-glycinal catalyzed by rhamnulose-1-phosphate aldolase expressed as a recombinant enzyme in Escherichia coli, yielding (3R,4S)-5-{[(benzyloxy)carbonyl]amino}-5-deoxy-1-O-phosphonopent-2-ulose. Tools of enzymatic immobilization, reactor configurations, and modification of the reaction medium were applied to highly increase the production of the target compound. While the use of soluble enzymes yielded only 23.6 % of Cbz-aminopolyol due to rapid enzyme inactivation, the use of immobilized ones permitted an almost complete consumption of Cbz-ethanolamine, reaching Cbz-aminopolyol yields of 69.1 and 71.9 % in the stirred-tank and packed-bed reactor, respectively. Furthermore, the reaction production was 18-fold improved when it was catalyzed by immobilized enzymes in the presence of 5 % (v/v) dioxane, reaching a value of 86.6 mM of Cbz-aminopoliol (31 g/L).
在这项工作中,首次在多酶一锅体系中成功地将酶促氧化和羟醛加成反应偶联,从 Cbz-氨基醇合成 Cbz-氨基聚醇。两步级联反应包括 Cbz-乙醇胺在真菌 Caldariomyces fumago 的氯过氧化物酶催化下氧化为 Cbz-乙醛,以及二羟丙酮磷酸与 Cbz-乙醛的羟醛加成,由重组酶在大肠杆菌中表达为鼠李糖-1-磷酸醛缩酶,生成(3R,4S)-5-[(苄氧基)羰基]氨基-5-脱氧-1-O-膦戊-2-酮。应用酶固定化工具、反应器构型和反应介质的修饰,极大地提高了目标化合物的产量。虽然使用可溶性酶仅由于酶迅速失活而产生 23.6%的 Cbz-氨基聚醇,但使用固定化酶可以使 Cbz-乙醇胺几乎完全消耗,在搅拌釜和填充床反应器中分别达到 69.1%和 71.9%的 Cbz-氨基聚醇产率。此外,当在 5%(v/v)二恶烷存在下由固定化酶催化时,反应产物提高了 18 倍,达到 86.6 mM 的 Cbz-氨基聚醇(31 g/L)。