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首页> 外文期刊>Preparative biochemistry & biotechnology: An international journal for rapid communication >Biotransformation of penicillin V to 6-aminopenicillanic acid using immobilized whole cells of E. coli expressing a highly active penicillin V acylase
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Biotransformation of penicillin V to 6-aminopenicillanic acid using immobilized whole cells of E. coli expressing a highly active penicillin V acylase

机译:青霉素V至6-氨基甲基酸的生物转移使用大肠杆菌的固定化全细胞表达高活性青霉素V酰基酶

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摘要

The production of 6-aminopenicillanic acid (6-APA) is a key step in the manufacture of semisynthetic antibiotics in the pharmaceutical industry. The penicillin G acylase from Escherichia coli has long been utilized for this purpose. However, the use of penicillin V acylases (PVA) presents some advantages including better stability and higher conversion rates. The industrial application of PVAs has so far been limited due to the nonavailability of suitable bacterial strains and cost issues. In this study, whole-cell immobilization of a recombinant PVA enzyme from Pectobacterium atrosepticum expressed in E. coli was performed. Membrane permeabilization with detergent was used to enhance the cell-bound PVA activity, and the cells were encapsulated in calcium alginate beads and cross-linked with glutaraldehyde. Optimization of parameters for the biotransformation by immobilized cells showed that full conversion of pen V to 6-APA could be achieved within 1 hr at pH 5.0 and 35 degrees C, till 4% (w/v) concentration of the substrate. The beads could be stored for 28 days at 4 degrees C with minimal loss in activity and were reusable up to 10 cycles with 1-hr hardening in CaCl2 between each cycle. The high enzyme productivity of the PVA enzyme system makes a promising case for its application for 6-APA production in the industry.
机译:6-氨基丙氨酸(6-APA)的生产是制造制药行业半合成抗生素的关键步骤。来自大肠杆菌的青霉素G酰基酶活性长期以来用于此目的。然而,使用青霉素V酰基酶(PVA)具有一些优点,包括更好的稳定性和更高的转化率。由于合适的细菌菌株和成本问题的不可用性,PVA的工业应用已经受到限制。在该研究中,进行了从大肠杆菌中表达的胶杆菌阿霉属植物菌属的重组PVA酶的全细胞固定。用洗涤剂的膜透化性用于增强细胞结合的PVA活性,并将细胞包封在藻酸钙珠粒中并与戊二醛交联。通过固定化细胞优化用于生物转化的参数,表明笔V至6-APA的完全转化可以在pH 5.0和35℃下的1小时内实现,直至4%(w / v)浓度的基材。珠粒可以在4℃下储存28天,活性最小损失,并且在每个循环之间的CACL2中可重复使用高达10个循环。 PVA酶系统的高酶生产率为其在行业中的6-APA生产中应用了一个很有希望的情况。

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