College of Materials Science and Engineering, Lanzhou University of Technology, Lanzhou, People's Republic of China.
State Key Laboratory of Gansu Advanced Non-ferrous Metal Materials, Lanzhou University of Technology, Lanzhou, People's Republic of China.
Biotechnol Appl Biochem. 2019 Nov;66(6):990-998. doi: 10.1002/bab.1817. Epub 2019 Dec 3.
In this work, TiO , which was modified by glutaraldehyde, was adopted as the carrier; the penicillin G acylase (PGA) was immobilized and the influence of immobilized conditions, such as pH of solution, the concentration of PGA, the immobilization temperature, and the reaction time, on the catalytic performance of the immobilized PGA was investigated and optimized. During this process, potassium penicillin G (PG) was chosen as substrate, and the quantity of 6-aminopenicillanic acid (6-APA) produced by PG at the temperature of 25 °C for 3 Min in neutral solution was conscripted as the evaluation foundation, indexes, containing the loading capacity (ELC), the activity (EA), and activity retention rate (EAR), were calculated based on quantities of produced 6-APA and compared with finding out the suitable conditions. Results showed that when the solution pH, PGA concentration, immobilization temperature, and reaction time were 8.0, 2.5% (v/v), 35 °C, and 24 H, respectively, ELC, EA, and EAR presented optimal values of 9,190 U, 14,969 U/g, and 88.5% relatedly. After that, the stability and reusability of immobilized PGA were studied, and the results documented that the pH resistance, thermal stability, and storage stability of immobilized PGA were significantly improved. This work provided technique support for the practical application of immobilized PGA carrier.
在这项工作中,采用戊二醛改性的 TiO 作为载体;固定化青霉素 G 酰化酶(PGA),考察了固定化条件(溶液 pH 值、PGA 浓度、固定化温度和反应时间)对固定化 PGA 催化性能的影响,并对其进行了优化。在此过程中,选择钾青霉素 G(PG)作为底物,以 25°C 中性溶液中 3 分钟内 PG 生成 6-氨基青霉素酸(6-APA)的量作为评价基础,根据生成的 6-APA 的量计算出负载量(ELC)、活性(EA)和活性保留率(EAR)等指标,并与发现合适的条件进行比较。结果表明,当溶液 pH 值、PGA 浓度、固定化温度和反应时间分别为 8.0、2.5%(v/v)、35°C 和 24 小时时,ELC、EA 和 EAR 分别呈现 9、190 U 和 14969 U/g 及 88.5%的最优值。之后,研究了固定化 PGA 的稳定性和重复使用性,结果表明固定化 PGA 的 pH 耐受性、热稳定性和储存稳定性得到了显著提高。这项工作为固定化 PGA 载体的实际应用提供了技术支持。