Centro de Investigaciones Biológicas, CSIC, Madrid, Spain.
National Bioenergy Center, National Renewable Energy Laboratory, Golden, CO, USA.
Sci Rep. 2018 Oct 23;8(1):15669. doi: 10.1038/s41598-018-34008-3.
The robustness of a high-redox potential laccase has been enhanced by swapping its second cupredoxin domain with that from another fungal laccase, which introduced a pool of neutral mutations in the protein sequence without affecting enzyme functionality. The new laccase showed outstanding stability to temperature, pH (2-9) and to organic solvents, while maintaining the ability to oxidize high-redox potential substrates. By engineering the signal peptide, enzyme secretion levels in Saccharomyces cerevisiae were increased, which allowed to purify the engineered enzyme for further characterization. The purified domain-swap laccase presented higher activity in the presence of ethanol or methanol, superior half-lives at 50-70 °C, improved stability at acidic pH, and similar catalytic efficiency for DMP albeit a lower one for ABTS (due to a shift in optimum pH). A new N-glycosylation site and a putative new surface salt-bridge were evaluated as possible determinants for the improved stability by site-directed mutagenesis. Although neither seemed to be strictly responsible for the improved thermostability, the new salt bridge was found to notably contribute to the high stability of the swapped enzyme in a broad pH range. Finally, the application potential of the new laccase was demonstrated with the enzymatic treatment of kraft lignin, an industrially relevant lignin stream, at high temperature, neutral pH and short incubation times.
一种高氧化还原电位漆酶的稳定性得到了增强,方法是将其第二个铜氧还蛋白结构域与另一种真菌漆酶的结构域交换,这在不影响酶功能的情况下,在蛋白质序列中引入了一组中性突变。新漆酶对温度、pH 值(2-9)和有机溶剂具有出色的稳定性,同时保持氧化高氧化还原电位底物的能力。通过对信号肽进行工程改造,提高了酿酒酵母中的酶分泌水平,从而能够纯化工程酶进行进一步的特性分析。纯化的结构域交换漆酶在存在乙醇或甲醇时表现出更高的活性,半衰期在 50-70°C 时更长,在酸性 pH 值下稳定性提高,对 DMP 的催化效率相似,尽管对 ABTS 的效率较低(由于最佳 pH 值发生了变化)。通过定点突变,评估了一个新的 N-糖基化位点和一个假定的新表面盐桥作为提高稳定性的可能决定因素。尽管这两个因素似乎都不是提高耐热性的严格决定因素,但新的盐桥被发现显著有助于交换酶在较宽的 pH 范围内的高稳定性。最后,在高温、中性 pH 值和短孵育时间下,用新漆酶对工业上相关的木质素流 kraft 木质素进行酶处理,展示了新漆酶的应用潜力。