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1.
PLoS One ; 19(7): e0305817, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38980877

RESUMO

The bovine rumen contains a large consortium of residential microbes that release a variety of digestive enzymes for feed degradation. However, the utilization of these microbial enzymes is still limited because these rumen microorganisms are mostly anaerobes and are thus unculturable. Therefore, we applied a sequence-based metagenomic approach to identify a novel 2,445-bp glycoside hydrolase family 3 ß-glucosidase gene known as BrGH3A from the metagenome of bovine ruminal fluid. BrGH3A ß-glucosidase is a 92-kDa polypeptide composed of 814 amino acid residues. Unlike most glycoside hydrolases in the same family, BrGH3A exhibited a permuted domain arrangement consisting of an (α/ß)6 sandwich domain, a fibronectin type III domain and a (ß/α)8 barrel domain. BrGH3A exhibited greater catalytic efficiency toward laminaribiose than cellobiose. We proposed that BrGH3A is an exo-acting ß-glucosidase from Spirochaetales bacteria that is possibly involved in the intracellular degradation of ß-1,3-/1,4-mixed linkage glucans that are present in grass cell walls. BrGH3A exhibits rich diversity in rumen hydrolytic enzymes and may represent a member of a new clan with a permuted domain topology within the large family.


Assuntos
Rúmen , beta-Glucosidase , Animais , Bovinos , Rúmen/microbiologia , Rúmen/enzimologia , beta-Glucosidase/genética , beta-Glucosidase/metabolismo , beta-Glucosidase/química , Sequência de Aminoácidos , Filogenia , Domínios Proteicos , Metagenoma
2.
Enzyme Microb Technol ; 140: 109591, 2020 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-32912700

RESUMO

Long-chain alkyl glucosides, such as octyl and decyl ß-d-glucopyranosides (OG and DG, respectively), are regarded as a new generation of biodegradable, non-ionic surfactants. Previously, the mutants of Dalbergia cochinchinensis Pierre dalcochinase showed potential in the synthesis of oligosaccharides and alkyl glucosides. In this study, the N189F dalcochinase mutant gave the highest yields of OG and DG synthesis under reverse hydrolysis conditions. The optimized yield of OG (57.5 mol%) was obtained in the reactions containing 0.25 M glucose and 0.3 units of the N189 F mutant in buffer-saturated octanol at 30 °C. The identity of OG and DG products was confirmed by high resolution mass spectrometry (HRMS) and NMR. Consistent with its capability for synthesis, the reactivation kinetics and ITC analysis revealed that the aglycone binding pocket of the N189F mutant was more favorable for long-chain alkyl alcohols than the wild-type dalcochinase, while their glycone binding pockets showed similar affinity for the glucosyl moiety. STD NMR revealed higher interactions at the aglycone sites than the glycone sites. Our results demonstrated a promising potential of the N189F dalcochinase mutant in the future commercial production of long-chain alkyl glucosides via reverse hydrolysis reactions.


Assuntos
Glucosídeos/metabolismo , beta-Glucosidase/metabolismo , Álcoois/química , Álcoois/metabolismo , Catálise , Dalbergia/enzimologia , Glucose/metabolismo , Glucosídeos/química , Cinética , Modelos Moleculares , Mutação , Proteínas de Plantas/química , Proteínas de Plantas/genética , Proteínas de Plantas/metabolismo , beta-Glucosidase/química , beta-Glucosidase/genética
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