Lignocellulosic biomass is an abundant renewable resource that is rich in aldohexoses and aldopentoses. Efficient biocatalysts for aldopentose oxidation remain limited, and few enzymes exhibit high catalytic efficiency toward both aldohexoses and aldopentoses. Here, a naturally promiscuous pyrroloquinoline quinone-dependent glucose dehydrogenase (PQQ-GDH) from Pseudomonas fragi NL20W was selected as an engineering template and tailored by semirational design to expand aldopentose oxidation while preserving native d-glucose activity. The V706P/L723 M mutant exhibited markedly enhanced catalytic efficiency toward d-xylose and l-arabinose, reaching 8.0- and 2.4-fold those of the wild-type, respectively, while its efficiency toward d-glucose was 1.3-fold that of the wild-type. Molecular simulations suggested that the improved catalysis was associated with an optimized substrate positioning and enhanced conformational flexibility of the active-site region. This study highlights the significance of natural enzyme scaffold selection in substrate scope engineering and expands the application potential of PQQ-GDH in the sustainable valorization of lignocellulosic sugars.
Yue-Hua Chen, Peng Liu, Binbin Sheng et al.· Journal of Agricultural and...· 0 citations
This work highlights the exceptional potential of Y. lipolytica as a cell factory for high-level pinosylvin production and presents an effective strategy for achieving high-level biosynthesis of cytotoxic natural products through engineered secretion.
Huanghong Tan, Yuxuan Wu, Xinyun Chen et al.· Journal of Biotechnology· 0 citations
This work provides an induction-based strategy for designing efficient microbial consortia and offers insights for improving the efficiency and sustainability of lignocellulosic biorefining.
Shuai Liang, Chang Yu, Jiaming Fu et al.· Bioresource Technology· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.