Results 51 to 60 of about 32,747,610 (220)
Combinatorial engineering of dextransucrase specificity. [PDF]
We used combinatorial engineering to investigate the relationships between structure and linkage specificity of the dextransucrase DSR-S from Leuconostoc mesenteroides NRRL B-512F, and to generate variants with altered specificity.
Romain Irague +7 more
doaj +1 more source
ABSTRACTPlants possess many glycoside hydrolase family 1 (GH1) β-glucosidases, which physiologically function in cell wall metabolism and activation of bioactive substances, but most remain uncharacterized. One GH1 isoenzyme AtBGlu42 in Arabidopsis thaliana has been identified to hydrolyze scopolin using the gene deficient plants, but no enzymatic ...
Shu Horikoshi +6 more
openaire +3 more sources
Analysis of two single trait loci affecting flavonol glycoside accumulations in Arabidopsis thaliana natural variations [PDF]
Ishihara H. Analysis of two single trait loci affecting flavonol glycoside accumulations in Arabidopsis thaliana natural variations. Bielefeld (Germany): Bielefeld University; 2007.Various plant secondary metabolites, including flavonoids, are involved ...
Ishihara, Hirofumi
core
Glycoside Hydrolase Family 63 nucleotide sequences
Fasta file with nucleotide sequences of Glycoside Hydrolase Family 63 protein from different fungal strains. In the file the following information of each sequence can be found: -organism -mol_type= type of molecule -tissue_type=origin of the fungal ...
Buée, Marc +5 more
core +1 more source
To clarify the roles of glycoside hydrolase 3 (GH3) family genes in the growth, development, and pathogenicity of Fusarium verticillioides, GH3 family genes were identified in the genome by bioinformatics software, and their expression levels in the ...
Xiaojie Zhang +13 more
doaj +1 more source
Oligosaccharides with defined glycosidic bonds drive divergent gut microbial succession and shape unique metabolic profiles. Absolute time‐series profiling with Bayesian generalized Lotka–Volterra modeling identifies bond‐specific microbial responders, while monoculture validation and metaproteomics reveal linkage‐matched transport and cleavage modules.
Xiaoxuan Lu +10 more
wiley +1 more source
A new group of glycoside hydrolase family 13 α-amylases with an aberrant catalytic triad [PDF]
α-Amylases are glycoside hydrolase enzymes that act on the α(1→4) glycosidic linkages in glycogen, starch, and related α-glucans, and are ubiquitously present in Nature. Most α-amylases have been classified in glycoside hydrolase family 13 with a typical
null Ihsanawati +20 more
core +2 more sources
Glycoside hydrolase family 1 (GH1) β-glucosidases (BGLUs), are encoded by a large number of genes, which participate in the development and stress response of plants, particularly under biotic and abiotic stresses through the activation of phytohormones.
Haiming Kong +9 more
doaj +1 more source
Predicting Enzyme Turnover Numbers and Enabling Rational Enzyme Evolution
MCKcat, a deep learning framework combining multi‐scale convolution and cross‐attention, accurately predicts enzyme turnover number (kcat) by fusing sequence and reaction representations. It couples with rational design in a two‐step strategy for Bacillus aryabhattai laccase engineering, achieving a 75% positive rate with synergistically enhanced ...
Fengya Ge +6 more
wiley +1 more source
Reaction Mechanism of Glycoside Hydrolase Family 116 Utilizes Perpendicular Protonation
Retaining glycoside hydrolases use acid/base catalysis with an enzymatic acid/base protonating the glycosidic bond oxygen to facilitate leaving-group departure alongside attack by a catalytic nucleophile to form a covalent intermediate.
Gideon J. Davies (367307) +4 more
core +2 more sources

