A β-glucuronosyltransferase from Arabidopsis thaliana involved in biosynthesis of type II arabinogalactan has a role in cell elongation during seedling growth

被引:74
作者
Knoch, Eva [1 ]
Dilokpimol, Adiphol [1 ]
Tryfona, Theodora [2 ]
Poulsen, Christian P. [1 ]
Xiong, Guangyan
Harholt, Jesper [1 ]
Petersen, Bent L. [1 ]
Ulvskov, Peter [1 ]
Hadi, Masood Z. [3 ]
Kotake, Toshihisa [4 ]
Tsumuraya, Yoichi [4 ]
Pauly, Markus
Dupree, Paul [2 ]
Geshi, Naomi [1 ]
机构
[1] Univ Copenhagen, Fac Sci, Dept Plant & Environm Sci, DK-1871 Frederiksberg C, Denmark
[2] Univ Cambridge, Dept Biochem, Cambridge CB2 1QW, England
[3] Univ Calif Berkeley, Lawrence Berkeley Natl Lab, Joint BioEnergy Inst, Berkeley, CA 94720 USA
[4] Saitama Univ, Grad Sch Sci & Engn, Div Life Sci, Sakura Ku, Saitama 3388570, Japan
基金
英国生物技术与生命科学研究理事会;
关键词
glycosyltransferase family14; glucuronosyltransferase; arabinogalactan protein; typeII arabinogalactan; plant cell wall; Golgi apparatus; Arabidopsis thaliana; FUNCTIONAL-CHARACTERIZATION; STRUCTURAL-ANALYSIS; MOLECULAR-CLONING; PLANT-GROWTH; CORE; PROTEINS; IDENTIFICATION; EXPRESSION; BETA-1,6-N-ACETYLGLUCOSAMINYLTRANSFERASE; PURIFICATION;
D O I
10.1111/tpj.12353
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
We have characterized a -glucuronosyltransferase (AtGlcAT14A) from Arabidopsis thaliana that is involved in the biosynthesis of typeII arabinogalactan (AG). This enzyme belongs to the Carbohydrate Active Enzyme database glycosyltransferase family14 (GT14). The protein was localized to the Golgi apparatus when transiently expressed in Nicotiana benthamiana. The soluble catalytic domain expressed in Pichia pastoris transferred glucuronic acid (GlcA) to -1,6-galactooligosaccharides with degrees of polymerization (DP) ranging from 3-11, and to -1,3-galactooligosaccharides of DP5 and 7, indicating that the enzyme is a glucuronosyltransferase that modifies both the -1,6- and -1,3-galactan present in typeII AG. Two allelic T-DNA insertion mutant lines showed 20-35% enhanced cell elongation during seedling growth compared to wild-type. Analyses of AG isolated from the mutants revealed a reduction of GlcA substitution on Gal--1,6-Gal and -1,3-Gal, indicating an in vivo role of AtGlcAT14A in synthesis of those structures in typeII AG. Moreover, a relative increase in the levels of 3-, 6- and 3,6-linked galactose (Gal) and reduced levels of 3-, 2- and 2,5-linked arabinose (Ara) were seen, suggesting that the mutation in AtGlcAT14A results in a relative increase of the longer and branched -1,3- and -1,6-galactans. This increase of galactosylation in the mutants is most likely caused by increased availability of the O6 position of Gal, which is a shared acceptor site for AtGlcAT14A and galactosyltransferases in synthesis of typeII AG, and thus addition of GlcA may terminate Gal chain extension. We discuss a role for the glucuronosyltransferase in the biosynthesis of typeII AG, with a biological role during seedling growth.
引用
收藏
页码:1016 / 1029
页数:14
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