Otten Linda G, Sio Charles F, Reis Carlos R, Koch Gudrun, Cool Robbert H, Quax Wim J
Pharmaceutical Biology, University Centre for Pharmacy, University of Groningen, The Netherlands.
FEBS J. 2007 Nov;274(21):5600-10. doi: 10.1111/j.1742-4658.2007.06081.x. Epub 2007 Oct 8.
There is strong interest in creating an enzyme that can deacylate natural cephalosporins such as cephalosporin C in order to efficiently acquire the starting compound for the industrial production of semisynthetic cephalosporin antibiotics. In this study, the active site of the glutaryl acylase from Pseudomonas SY-77 was randomized rationally. Several mutations that were found in previous studies to enhance the activity of the enzyme towards adipyl-7-aminodesacetoxycephalosporanic acid (ADCA) and cephalosporin C have now been combined, and libraries have been made in which random amino acid substitutions at these positions are joined. The mutants were expressed in a leucine-deficient Escherichia coli strain and subjected to growth selection with adipyl-leucine or amino-adipyl-leucine as sole leucine source. The mutants growing on these media were selected and purified, and their hydrolysis activities towards adipyl-7-ADCA and cephalosporin C were tested. Several mutants with highly improved activities towards the desired substrates were found in these rationally randomized libraries. The best mutant was selected from a library of totally randomized residues: 178, 266, and 375. This mutant comprises two mutations, Y178F + F375H, which synergistically improve the catalytic efficiency towards adipyl-7-ADCA 36-fold. The activity of this mutant towards adipyl-7-ADCA is 50% of the activity of the wild-type enzyme towards the preferred substrate glutaryl-7-aminocephalosporanic acid, and therefore the characteristics of this mutant approach those needed for industrial application.
人们对创造一种能够使天然头孢菌素(如头孢菌素C)脱酰基的酶有着浓厚兴趣,以便高效获取半合成头孢菌素抗生素工业生产的起始化合物。在本研究中,对来自假单胞菌SY - 77的戊二酰基酰基转移酶的活性位点进行了合理的随机化处理。将先前研究中发现的几个可增强该酶对己二酰 - 7 - 氨基去乙酰氧基头孢烷酸(ADCA)和头孢菌素C活性的突变进行了组合,并构建了在这些位置进行随机氨基酸替换的文库。这些突变体在缺乏亮氨酸的大肠杆菌菌株中表达,并用己二酰亮氨酸或氨基己二酰亮氨酸作为唯一亮氨酸来源进行生长筛选。选择并纯化了在这些培养基上生长的突变体,并测试了它们对己二酰 - 7 - ADCA和头孢菌素C的水解活性。在这些合理随机化的文库中发现了几个对所需底物活性有显著提高的突变体。从完全随机化残基(178、266和375)的文库中选择了最佳突变体。该突变体包含两个突变,Y178F + F375H,它们协同将对己二酰 - 7 - ADCA的催化效率提高了36倍。该突变体对己二酰 - 7 - ADCA的活性是野生型酶对首选底物戊二酰 - 7 - 氨基头孢烷酸活性的50%,因此该突变体的特性接近工业应用所需的特性。