Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Enzymatic Transglycosylation

View through CrossRef
AbstractThe most important functions of carbohydrates are structural roles and energy storage, but carbohydrate parts of glycoproteins and glycolipids are involved in biological functions mainly related to cell recognition events. Carbohydrates are also important molecules in the technological domain. A copious amount of information concerning the synthesis and transformation of complex saccharides in living organisms exists nowadays: the enzymes responsible for the synthesis of glycosidic linkage have been recognized as glycosyltransferases. Glycoside hydrolases (glycosidases) are different enzymes responsible for the hydrolysis of glycosidic linkages, but they can be efficiently used in synthesis. Indeed, at the present time, genetic engineering of glycosidases has emerged as a powerful tool for scientists, in the synthetic field, with the aim to set up chemically, efficient biocatalysts. In this contribution, the glycosyl transfer between oxygen nucleophiles will be analyzed from the chemical and the biotechnological points of view. Chemical machinery for hydrolysis and synthesis of the enzyme glycoside hydrolases and glycosyltransferases will be analyzed, including issues inherent to donors and acceptors and biocatalyst natural sources; in particular, discussing the modern genetic efforts to prepare tailored enzymes with high synthetic ability. Case studies for laboratory and industrial importance are analyzed as well.
Title: Enzymatic Transglycosylation
Description:
AbstractThe most important functions of carbohydrates are structural roles and energy storage, but carbohydrate parts of glycoproteins and glycolipids are involved in biological functions mainly related to cell recognition events.
Carbohydrates are also important molecules in the technological domain.
A copious amount of information concerning the synthesis and transformation of complex saccharides in living organisms exists nowadays: the enzymes responsible for the synthesis of glycosidic linkage have been recognized as glycosyltransferases.
Glycoside hydrolases (glycosidases) are different enzymes responsible for the hydrolysis of glycosidic linkages, but they can be efficiently used in synthesis.
Indeed, at the present time, genetic engineering of glycosidases has emerged as a powerful tool for scientists, in the synthetic field, with the aim to set up chemically, efficient biocatalysts.
In this contribution, the glycosyl transfer between oxygen nucleophiles will be analyzed from the chemical and the biotechnological points of view.
Chemical machinery for hydrolysis and synthesis of the enzyme glycoside hydrolases and glycosyltransferases will be analyzed, including issues inherent to donors and acceptors and biocatalyst natural sources; in particular, discussing the modern genetic efforts to prepare tailored enzymes with high synthetic ability.
Case studies for laboratory and industrial importance are analyzed as well.

Related Results

Tuning the Transglycosylation Reaction of a GH11 Xylanase by a Delicate Enhancement of its Thumb Flexibility
Tuning the Transglycosylation Reaction of a GH11 Xylanase by a Delicate Enhancement of its Thumb Flexibility
Abstract Glycoside hydrolases (GHs) are attractive tools for multiple biotechnological applications. In conjunction with their hydrolytic fun...
Polysaccharide-Modifying Enzymes in the Plant Cell Wall
Polysaccharide-Modifying Enzymes in the Plant Cell Wall
Enzymes found in the cell walls of higher plants are surveyed briefly, especially those in the primary cell walls of growing tissue. Attention is focused on hydrolases and transgly...
Synthèse de xylosides et d'oligoxylosides par voie enzymatique
Synthèse de xylosides et d'oligoxylosides par voie enzymatique
La valorisation non alimentaire de la biomasse végétale représente un enjeu actuel majeur dans le contexte du développement de la bioraffinerie végétale. En Champagne-Ardenne, la t...
Machine Learning Differentiates Enzymatic and Non-Enzymatic Metals in Proteins
Machine Learning Differentiates Enzymatic and Non-Enzymatic Metals in Proteins
Abstract Metalloenzymes are 40% of all enzymes and can perform all seven classes of enzyme reactions. Because of the physicochemical similarities...
Evidence for Role of Enzymatic Operations in Shared T-Cell Receptors
Evidence for Role of Enzymatic Operations in Shared T-Cell Receptors
Abstract Background: There exist shared T cell receptors (TCR) found in the circulating repertoires of healthy individuals. The exact mechanism for wh...
Transglycosylation of Rebaudioside А by β-fructofuranosidase
Transglycosylation of Rebaudioside А by β-fructofuranosidase
Rebaudioside A (RebaA) was subjected to β-2.6 transglycosylation with β-fructofuranosidase from Arthrobacter sp. K-1 and sucrose as a source of fructose units. The yield of transgl...
Effects of Rhamnolipids on Enzymatic Hydrolysis of Bamboo Biomass and Mechanism
Effects of Rhamnolipids on Enzymatic Hydrolysis of Bamboo Biomass and Mechanism
The lignin present in lignocellulose seriously affects the efficiency of cellulose enzymatic hydrolysis. In addition, lignin adsorbs high-cost cellulase, causing greater economic l...
Enzymatic-assisted preparation of nanocrystalline cellulose from non-wood fibers
Enzymatic-assisted preparation of nanocrystalline cellulose from non-wood fibers
In the current scenario of growing environmental concerns, the search for innovative, renewable, non-polluting materials has never been as intensive as it is today. Cellulose, bein...

Back to Top