乳克鲁维酵母
生物催化
克鲁维酵母
生化工程
化学
酶
生物技术
生物化学
催化作用
酵母
生物
酿酒酵母
工程类
离子液体
作者
Tiago Lima de Albuquerque,Marylane de Sousa,Natan Câmara Gomes e Silva,Carlos Pascoal Neto,Luciana Rocha Barros Gonçalves,Roberto Fernandez-Lafuente,Maria João Rocha
标识
DOI:10.1016/j.ijbiomac.2021.09.133
摘要
A review on the enzyme β-galactosidase from Kluyveromyces lactis is presented, from the perspective of its structure and mechanisms of action, the main catalyzed reactions, the key factors influencing its activity, and selectivity, as well as the main techniques used for improving the biocatalyst functionality. Particular attention was given to the discussion of hydrolysis, transglycosylation, and galactosylation reactions, which are commonly mediated by this enzyme. In addition, the products generated from these processes were highlighted. Finally, biocatalyst improvement techniques are also discussed, such as enzyme immobilization and protein engineering. On these topics, the most recent immobilization strategies are presented, emphasizing processes that not only allow the recovery of the biocatalyst but also deliver enzymes that show better resistance to high temperatures, chemicals, and inhibitors. In addition, genetic engineering techniques to improve the catalytic properties of the β-galactosidases were reported. This review gathers information to allow the development of biocatalysts based on the β-galactosidase enzyme from K. lactis, aiming to improve existing bioprocesses or develop new ones.
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