1994•Journal of Carbohydrate ChemistryRequires access

A Conformational Study of Hydroxymethyl Groups in Carbohydrates Investigated by 1H NMR Spectroscopy

Klaus Bock, Jens Ø. Duus

Open publisher page 273 citations

Abstract

It is generally acknowledged that information about carbohydrate conformation is important for the understanding of interaction between carbohydrates and other biomolecules, such as proteins.1–5 The major part of oligosaccharides involved in the interactions are made up of hexopyranoses, and the overall conformation can be described by the rotation of the glycosidic linkages and the bonds to the exocyclic groups,6,7 e.g., the hydroxymethyl groups and N-Acetyl groups. The conformation of the hydroxymethyl group is of interest for interactions involving the hydroxyl group at this position.2,8,9 Furthermor, the conformation of the C5-C6 linkage determines the overall shape of oligosaccharides with glycosidic linkages to 06.10–27 The conformational preferences of the hydroxymethyl group in mono and oligosaccharides have therefore been the subject of several investigations including both experimental and theoretical studies, as will be discussed in the following.

About this research paper

What this paper is about

It is generally acknowledged that information about carbohydrate conformation is important for the understanding of interaction between carbohydrates and other biomolecules, such as proteins.1–5 The major part of oligosaccharides involved in the interactions are made up of hexopyranoses, and the overall conformation can be described by the rotation of the glycosidic linkages and the bonds to the exocyclic groups,6,7 e.g., the hydroxymethyl groups and N-Acetyl groups. The conformation of the hydroxymethyl group is of interest for interactions involving the hydroxyl group at this position.2,8,9 Furthermor, the conformation of the C5-C6 linkage determines the overall shape of oligosaccharides with glycosidic linkages to 06.10–27 The conformational preferences of the hydroxymethyl group in mono and oligosaccharides have therefore been the subject of several investigations including both experimental and theoretical studies, as will be discussed in the following.

Why it matters

OpenAlex reports 273 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

It is generally acknowledged that information about carbohydrate conformation is important for the understanding of interaction between carbohydrates and other biomolecules, such as proteins.1–5 The major part of oligosaccharides involved in the interactions are made up of hexopyranoses, and the overall conformation can be described by the rotation of the glycosidic linkages and the bonds to the exocyclic groups,6,7 e.g., the hydroxymethyl groups and N-Acetyl groups. The conformation of the hydroxymethyl group is of interest for interactions involving the hydroxyl group at this position.2,8,9 Furthermor, the conformation of the C5-C6 linkage determines the overall shape of oligosaccharides with glycosidic linkages to 06.10–27 The conformational preferences of the hydroxymethyl group in mono and oligosaccharides have therefore been the subject of several investigations including both experimental and theoretical studies, as will be discussed in the following.

Key concepts: Chemistry, Glycosidic bond, Hydroxymethyl, Stereochemistry, Carbohydrate chemistry, Group (periodic table), Nuclear magnetic resonance spectroscopy, Oligosaccharide

Related papers

Back to paper searchBrowse research topicsOriginal source
A Conformational Study of Hydroxymethyl Groups in Carbohydrates Investigated by 1H NMR Spectroscopy — Research Paper | ScholarLens