Substrate specificity of glycoside hydrolase family 1 β-glucosidase AtBGlu42 from Arabidopsis thaliana and its molecular mechanism

Author:

Horikoshi Shu1ORCID,Saburi Wataru1,Yu Jian2,Matsuura Hideyuki1ORCID,Cairns James R Ketudat3,Yao Min2ORCID,Mori Haruhide1ORCID

Affiliation:

1. Research Faculty of Agriculture, Hokkaido University, Sapporo, Japan

2. Faculty of Advanced Life Science, Hokkaido University, Sapporo, Japan

3. School of Chemistry, Institute of Science, Suranaree University of Technology, Nakhon Ratchasima, Thailand

Abstract

ABSTRACT Plants possess many glycoside hydrolase family 1 (GH1) β-glucosidases, which physiologically function in cell wall metabolism and activation of bioactive substances, but most remain uncharacterized. One GH1 isoenzyme AtBGlu42 in Arabidopsis thaliana has been identified to hydrolyze scopolin using the gene deficient plants, but no enzymatic properties were obtained. Its sequence similarity to another functionally characterized enzyme Os1BGlu4 in rice suggests that AtBGlu42 also acts on oligosaccharides. Here, we show that the recombinant AtBGlu42 possesses high kcat/Km not only on scopolin, but also on various β-glucosides, cellooligosaccharides, and laminarioligosaccharides. Of the cellooligosaccharides, cellotriose was the most preferred. The crystal structure, determined at 1.7 Å resolution, suggests that Arg342 gives unfavorable binding to cellooligosaccharides at subsite +3. The mutants R342Y and R342A showed the highest preference on cellotetraose or cellopentaose with increased affinities at subsite +3, indicating that the residues at this position have an important role for chain length specificity.

Funder

Drug Discovery and Life Science Research

Innovative Drug Discovery and Life Science Research

Publisher

Oxford University Press (OUP)

Subject

Organic Chemistry,Molecular Biology,Applied Microbiology and Biotechnology,General Medicine,Biochemistry,Analytical Chemistry,Biotechnology

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