Aug 2026· Journal of Agricultural and Food Chemistry· Vol 74, pp. 27687 - 27697· 0 citations· 37 references
Medicine
Abstract
Mannans are abundant plant hemicelluloses, and endo-β-mannanases are important biocatalysts for their conversion into functional manno-oligosaccharides. Here, we report the structural and functional characterization of a glycoside hydrolase family 134 β-mannanase from Aspergillus nidulans (AnGH134) and a structure-guided engineering strategy to improve its performance on locust bean gum. The 1.75 Å crystal structure reveals the conserved lysozyme-like fold of GH134 enzymes and supports an inverting catalytic mechanism with Glu43 and Asp55 as the putative catalytic residues. Docking, mutational, and molecular dynamics analyses indicate that AnGH134 uses an extended substrate-binding groove and that groove-exit residues and the C-terminal region contribute to productive catalysis. Guided by these findings, N-terminal fusion of CBM10 enhanced catalytic efficiency and thermal stability, whereas C-terminal fusion was detrimental. These results provide a framework for engineering GH134 mannanases.
It is suggested that Ca2+ may play an evolutionary conserved activation role, modulating CBM flexibility and its orientation relative to the catalytic domain, modulating CBM flexibility and its orientation relative to the catalytic domain in the GH26 family.
M. Orlando, Mattia Salvadori, P. Sarris et al.· International Journal of Bio...· 0 citations
Efficient xylose bioconversion is limited by the catalytic performance of xylulokinase (XylB), which phosphorylates d-xylulose to xylulose-5-phosphate. This study aimed to improve XylB from Lactococcus lactis N8 using a multi-dimensional semi-rational design strategy integrating sequence conservation, structure-based...
Ya-Qian Ai, Tao Geng, Wen-Jie Chen et al.· Journal of Agricultural and...· 0 citations
Biomass polysaccharides are explored as inexpensive raw materials for preparing value-added products, such as mannan oligosaccharides (MOS). However, the varied composition of MOS and the underlying mechanism have not been studied thoroughly yet. Here a β-mannanase from Paenibacillus sp. was engineered for hydrolyzing...
R. Fang, Jiajia Chen, Yan Xu et al.· Journal of Agricultural and...· 0 citations
This review summarizes the current knowledge of microbial α-L-rhamnosidases, emphasizing their sources, biochemical characteristics, substrate specificity, structural organization, catalytic mechanisms, therapeutic relevance, and recent advances in protein engineering.
Kunwar Vishal, Vinita Yadav, Pramod K. Yadav· Journal of Agricultural and...· 0 citations