Zhang Xiu, Li Wei, Pan Lixia, Yang Liyan, Li Hongliang, Ji Feng, Zhang Yunkai, Tang Hongzhen, Yang Dengfeng
College of Life Science and Technology, Guangxi University, Nanning, Guangxi, China.
Guangxi Key Laboratory of Marine Natural Products and Combinatorial Biosynthesis Chemistry, Guangxi Beibu Gulf Marine Research Center, National Engineering Research Center of Non-food Biorefinery, State Key Laboratory of Non-Food Biomass and Enzyme Technology, Guangxi Academy of Sciences, Nanning, Guangxi, China.
Front Bioeng Biotechnol. 2022 Sep 7;10:1011273. doi: 10.3389/fbioe.2022.1011273. eCollection 2022.
FlAlyA, a PL7 alginate lyase with industrial potential, is widely applied in the preparation the alginate oligosaccharide because of its high activity of degradation the alginate. However, heat inactivation still limits the industrial application of FlAlyA. To further enhance its thermostability, a group of mutants were designed, according to evaluating the B-factor value and free energy change via computer-aided calculation. 25 single-point mutants and one double-points mutant were carried out by site-directed mutagenesis. The optimal two single-point mutants H176D and H71K showed 1.20 and 0.3°C increases in the values of , while 7.58 and 1.73 min increases in the values of half-life ( ) at 50°C, respectively, compared with that of the wild-type enzyme. Interestingly, H71K exhibits the comprehensive improvement than WT, including expression level, thermal stability and specific activity. In addition, the mechanism of these two mutants is speculated by multiple sequence alignment, structural basis and molecular dynamics simulation, which is likely to be involved in the formation of new hydrogen bonds and decrease the SASA of the mutants. These results indicate that B-factor is an efficient approach to improves the thermostability of alginate lyase composed of β-sheet unit. Furthermore, the highest yield of the mutant reached about 650 mg/L, which was nearly 36 times that of previous studies. The high expression, excellent activity and good thermal stability make FlAlyA a potential candidate for the industrial production of alginate oligosaccharides.
FlAlyA是一种具有工业潜力的PL7海藻酸裂解酶,因其对海藻酸盐具有高降解活性,被广泛应用于海藻酸寡糖的制备。然而,热失活仍然限制了FlAlyA的工业应用。为了进一步提高其热稳定性,通过计算机辅助计算评估B因子值和自由能变化,设计了一组突变体。通过定点诱变获得了25个单点突变体和1个双点突变体。与野生型酶相比,最优的两个单点突变体H176D和H71K的Tm值分别提高了1.20和0.3°C,而在50°C下的半衰期(t1/2)值分别增加了7.58和1.73分钟。有趣的是,H71K在表达水平、热稳定性和比活性方面均比野生型有全面的提高。此外,通过多序列比对、结构基础和分子动力学模拟推测了这两个突变体的作用机制,可能涉及新氢键的形成并降低了突变体的溶剂可及表面积(SASA)。这些结果表明,B因子是提高由β-折叠单元组成的海藻酸裂解酶热稳定性的有效方法。此外,突变体的最高产量达到约650mg/L,几乎是先前研究的36倍。高表达、优异的活性和良好的热稳定性使FlAlyA成为工业生产海藻酸寡糖的潜在候选者。