Balaž Ana Marija, Stevanović Jelena, Ostafe Raluca, Blazić Marija, Ilić Đurđić Karla, Fischer Rainer, Prodanović Radivoje
Institute of Chemistry, Technology and Metallurgy, University of Belgrade, Njegoseva 12, 11000, Belgrade, Serbia.
Department of Biochemistry, Faculty of Chemistry, University of Belgrade, Studentski trg 12 - 16, 11000, Belgrade, Serbia.
Mol Divers. 2020 Aug;24(3):593-601. doi: 10.1007/s11030-019-09965-0. Epub 2019 Jun 1.
Cellobiose dehydrogenase (CDH, EC 1.1.99.18) from white rot fungi Phanerochaete chrysosporium can be used for constructing biosensors and biofuel cells, for bleaching cotton in textile industry, and recently, the enzyme has found an important application in biomedicine as an antimicrobial and antibiofilm agent. Stability and activity of the wild-type (wt) CDH and mutants at methionine residues in the presence of hydrogen peroxide were investigated. Saturation mutagenesis libraries were made at the only methionine in heme domain M65 and two methionines M685 and M738 in the flavin domain that were closest to the active site. After screening the libraries, three mutants with increased activity and stability in the presence of peroxide were found, M65F with 70% of residual activity after 6 h of incubation in 0.3 M hydrogen peroxide, M738S with 80% of residual activity and M685Y with over 90% of residual activity compared to wild-type CDH that retained 40% of original activity. Combined mutants showed no activity. The most stable mutant M685Y with 5.8 times increased half-life in the presence of peroxide showed also 2.5 times increased k for lactose compared to wtCDH and could be good candidate for applications in biofuel cells and biocatalysis for lactobionic acid production.
来自白腐真菌黄孢原毛平革菌的纤维二糖脱氢酶(CDH,EC 1.1.99.18)可用于构建生物传感器和生物燃料电池,用于纺织工业中棉织物的漂白,最近,该酶在生物医药领域作为抗菌和抗生物膜剂也有重要应用。研究了野生型(wt)CDH及其甲硫氨酸残基突变体在过氧化氢存在下的稳定性和活性。在血红素结构域中唯一的甲硫氨酸M65以及黄素结构域中最靠近活性位点的两个甲硫氨酸M685和M738处构建了饱和诱变文库。筛选文库后,发现了三个在过氧化氢存在下活性和稳定性增强的突变体,在0.3 M过氧化氢中孵育6小时后,M65F的残余活性为70%,M738S的残余活性为80%,M685Y的残余活性超过90%,而野生型CDH的原始活性仅保留40%。组合突变体无活性。最稳定的突变体M685Y在过氧化氢存在下的半衰期增加了5.8倍,与wtCDH相比,其乳糖的k值也增加了2.5倍,可能是生物燃料电池和用于生产乳糖酸的生物催化应用的良好候选者。