Structural Characterization of Arabidopsis Leaf Arabinogalactan Polysaccharides

Author:

Tryfona Theodora1,Liang Hui-Chung1,Kotake Toshihisa1,Tsumuraya Yoichi1,Stephens Elaine1,Dupree Paul1

Affiliation:

1. School of Biological Sciences, Department of Biochemistry, Cambridge University, CB2 1QW Cambridge, United Kingdom (T.T., H.-C.L., P.D.); School of Physical Sciences, Department of Chemistry, Cambridge University, CB2 1EW Cambridge, United Kingdom (T.T., E.S.); Division of Life Science, Graduate School of Science and Engineering, Saitama University, Saitama 338–8642, Japan (T.K., Y.T.)

Abstract

Abstract Proteins decorated with arabinogalactan (AG) have important roles in cell wall structure and plant development, yet the structure and biosynthesis of this polysaccharide are poorly understood. To facilitate the analysis of biosynthetic mutants, water-extractable arabinogalactan proteins (AGPs) were isolated from the leaves of Arabidopsis (Arabidopsis thaliana) plants and the structure of the AG carbohydrate component was studied. Enzymes able to hydrolyze specifically AG were utilized to release AG oligosaccharides. The released oligosaccharides were characterized by high-energy matrix-assisted laser desorption ionization-collision-induced dissociation mass spectrometry and polysaccharide analysis by carbohydrate gel electrophoresis. The Arabidopsis AG is composed of a β-(1→3)-galactan backbone with β-(1→6)-d-galactan side chains. The β-(1→6)-galactan side chains vary in length from one to over 20 galactosyl residues, and they are partly substituted with single α-(1→3)-l-arabinofuranosyl residues. Additionally, a substantial proportion of the β-(1→6)-galactan side chain oligosaccharides are substituted at the nonreducing termini with single 4-O-methyl-glucuronosyl residues via β-(1→6)-linkages. The β-(1→6)-galactan side chains are occasionally substituted with α-l-fucosyl. In the fucose-deficient murus1 mutant, AGPs lack these fucose modifications. This work demonstrates that Arabidopsis mutants in AGP structure can be identified and characterized. The detailed structural elucidation of the AG polysaccharides from the leaves of Arabidopsis is essential for insights into the structure-function relationships of these molecules and will assist studies on their biosynthesis.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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