National Biopesticide Engineering Technology Research Center, Hubei Biopesticide Engineering Research Center, Hubei Academy of Agricultural Sciences, Biopesticide Branch of Hubei Innovation Centre of Agricultural Science and Technology, Wuhan 430068, China.
State Key Laboratory of Biocatalysis and Enzyme, Engineering Hubei Collaborative Innovation Center for Green Transformation of Bio-Resources, Hubei Key Laboratory of Industrial Biotechnology, Biology Faculty of Hubei University, Hubei University, Wuhan 430062, China.
Molecules. 2022 Jan 26;27(3):800. doi: 10.3390/molecules27030800.
Chitosanase hydrolyzes β-(1,4)-linked glycosidic bonds are used in chitosan chains to release oligosaccharide mixtures. Here, we cloned and expressed a cold-adapted chitosanase (CDA, Genbank: MW094131) using multi-copy expression plasmids (CDA1/2/3/4) in . We identified elevated CDA expression levels in multi-copy strains, with strain PCDA4 selected for high-density fermentation and enzyme-activity studies. The high-density fermentation approach generated a CDA yield of 20014.8 U/mL, with temperature and pH optimization experiments revealing the highest CDA activity at 20 °C and 5.0, respectively. CDA was stable at 10 °C and 20 °C. Thus, CDA could be used at low temperatures. CDA was then displayed on using multi-copy expression plasmids. Then, multi-copy strains were constructed and labelled as PCDA(1-3)-AGα1. Further studies showed that the expression of CDA(1-3)-AGα1 in multi-copy strains was increased, and that strain PCDA3-AGα1 was chosen for high-density fermentation and enzyme activity studies. By using a multi-copy expression and high-density fermentation approach, we observed CDA-AGα1 expression yields of 102415 U/g dry cell weight. These data showed that the displayed CDA exhibited improved thermostability and was more stable over wider temperature and pH ranges than free CDA. In addition, displayed CDA could be reused. Thus, the data showed that displaying enzymes on may have applications in industrial settings.
壳聚糖酶水解β-(1,4)-糖苷键用于壳聚糖链中,以释放低聚糖混合物。在这里,我们使用多拷贝表达质粒(CDA1/2/3/4)在. 中克隆和表达了一种耐冷的壳聚糖酶(CDA,Genbank:MW094131)。我们在多拷贝菌株中鉴定出了升高的 CDA 表达水平,选择 PCDA4 菌株进行高密度发酵和酶活性研究。高密度发酵方法产生了 20014.8 U/mL 的 CDA 产量,温度和 pH 值优化实验表明,CDA 的最高活性分别为 20°C 和 5.0。CDA 在 10°C 和 20°C 下稳定。因此,CDA 可以在低温下使用。然后使用多拷贝表达质粒在. 上展示 CDA。然后,构建了多拷贝菌株并标记为 PCDA(1-3)-AGα1。进一步的研究表明,CDA(1-3)-AGα1 在多拷贝菌株中的表达增加了,选择 PCDA3-AGα1 菌株进行高密度发酵和酶活性研究。通过使用多拷贝表达和高密度发酵方法,我们观察到 CDA-AGα1 的表达产量为 102415 U/g 干细胞重量。这些数据表明,展示的 CDA 表现出改善的热稳定性,并且在更宽的温度和 pH 范围内比游离 CDA 更稳定。此外,展示的 CDA 可以重复使用。因此,这些数据表明,在工业环境中,将酶展示在. 上可能具有应用前景。