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利用多功能固定化多酶体系可持续、连续合成手性 l-氨基酸。

Sustainable and Continuous Synthesis of Enantiopure l-Amino Acids by Using a Versatile Immobilised Multienzyme System.

机构信息

Heterogeneous Biocatalysis Group, CIC biomaGUNE, Paseo de Miramón 182, 20014, Donostia, Spain.

Radiochemistry and Nuclear Imaging Group, CIC biomaGUNE, Paseo de Miramón 182, 20014, Donostia, Spain.

出版信息

Chembiochem. 2018 Feb 16;19(4):395-403. doi: 10.1002/cbic.201700493. Epub 2017 Nov 3.

Abstract

The enzymatic synthesis of α-amino acids is a sustainable and efficient alternative to chemical processes, through which achieving enantiopure products is difficult. To more address this synthesis efficiently, a hierarchical architecture that irreversibly co-immobilises an amino acid dehydrogenase with polyethyleneimine on porous agarose beads has been designed and fabricated. The cationic polymer acts as an irreversible anchoring layer for the formate dehydrogenase. In this architecture, the two enzymes and polymer colocalise across the whole microstructure of the porous carrier. This multifunctional heterogeneous biocatalyst was kinetically characterised and applied to the enantioselective synthesis of a variety of canonical and noncanonical α-amino acids in both discontinuous (batch) and continuous modes. The co-immobilised bienzymatic system conserves more than 50 % of its initial effectiveness after five batch cycles and 8 days of continuous operation. Additionally, the environmental impact of this process has been semiquantitatively calculated and compared with the state of the art.

摘要

酶法合成α-氨基酸是一种可持续且高效的替代化学方法的手段,因为通过化学方法难以实现对映体纯产物。为了更有效地进行这种合成,设计并制造了一种分层结构,将氨基酸脱氢酶和聚乙烯亚胺不可逆地共固定在多孔琼脂糖珠上。阳离子聚合物作为甲酸盐脱氢酶的不可逆固定层。在这种结构中,两种酶和聚合物在整个多孔载体的整个微观结构中都发生共定位。这种多功能的非均相生物催化剂的动力学特征进行了表征,并应用于各种经典和非经典α-氨基酸的对映选择性合成,包括不连续(分批)和连续两种模式。共固定化双酶系统在五个分批循环和连续运行 8 天后,仍保留超过初始效率的 50%。此外,还对该过程的环境影响进行了半定量计算,并与现有技术进行了比较。

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