Title of article
Rice family GH1 glycoside hydrolases with β-d-glucosidase and β-d-mannosidase activities
Author/Authors
Kuntothom، نويسنده , , Teerachai and Luang، نويسنده , , Sukanya and Harvey، نويسنده , , Andrew J. and Fincher، نويسنده , , Geoffrey B. and Opassiri، نويسنده , , Rodjana and Hrmova، نويسنده , , Maria and Ketudat Cairns، نويسنده , , James R.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2009
Pages
11
From page
85
To page
95
Abstract
Plant β-d-mannosidases and a rice β-d-glucosidase, Os3BGlu7, with weak β-d-mannosidase activity, cluster together in phylogenetic analysis. To investigate the relationship between substrate specificity and amino acid sequence similarity in family GH1 glycoside hydrolases, Os3BGlu8 and Os7BGlu26, putative rice β-d-glucosidases from this cluster, and a β-d-mannosidase from barley (rHvBII), were expressed in Escherichia coli and characterized. Os3BGlu8, the amino acid sequence and molecular model of which are most similar to Os3BGlu7, hydrolysed 4-nitrophenyl-β-d-glucopyranoside (4NPGlc) faster than 4-nitrophenyl-β-d-mannopyranoside (4NPMan), while Os7BGlu26, which is most similar to rHvBII by these criteria, hydrolysed 4NPMan faster than 4NPGlc. All the enzymes hydrolyzed cellooligosaccharides with increased hydrolytic rates as the degree of polymerization increased from 3–6, but only rHvBII hydrolyzed cellobiose with a higher kcat/Km value than cellotriose. This was primarily due to strong binding of glucosyl residues at the + 2 subsite for the rice enzymes, and unfavorable interactions at this subsite with rHvBII.
Keywords
Oryza sativa , Substrate Specificity , molecular modelling , Phylogenetic analysis , Subsite mapping , Hordeum vulgare
Journal title
Archives of Biochemistry and Biophysics
Serial Year
2009
Journal title
Archives of Biochemistry and Biophysics
Record number
1603292
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