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Bioscience, Biotechnology, and Biochemistry|July 26, 2023
Hydrolysis-transglycosylation of sucrose and production of β-(2→1)-fructan by inulosucrase from Neobacillus drentensis 57NYusuke Kido, Wataru Saburi, Taizo Nagura, et al.Bioscience, Biotechnology, and Biochemistry|August 12, 2010
Practical preparation of epilactose produced with cellobiose 2-epimerase from Ruminococcus albus NE1Wataru Saburi, Takeshi Yamamoto, Hidenori Taguchi, et al.FEBS Letters|June 6, 2018
Function and structure of GH13_31 α-glucosidase with high α-(1→4)-glucosidic linkage specificity and transglucosylation activityWaraporn Auiewiriyanukul, Wataru Saburi, Koji Kato, et al.Marine Drugs|March 24, 2022
Characterization of Antioxidant Activity of Heated Mycosporine-like Amino Acids from Red Alga Dulse Palmaria palmata in JapanYuki Nishida, Wataru Saburi, Yoshikatsu Miyabe, et al.Biochemical and Biophysical Research Communications|December 10, 2014
Extracellular and cell-associated forms of Gluconobacter oxydans dextran dextrinase change their localization depending on the cell growthJuri Sadahiro, Haruhide Mori, Wataru Saburi, et al.The Journal of Biological Chemistry|September 21, 2013
Replacement of the catalytic nucleophile aspartyl residue of dextran glucosidase by cysteine sulfinate enhances transglycosylation activityWataru Saburi, Momoko Kobayashi, Haruhide Mori, et al.ACS Omega|March 23, 2026
Functional Analysis of Amino Acid Residues Responsible for Substrate Specificity of GH13_17 α‑Glucosidase from Aedes aegypti Saliva (AaMalI)Waraporn Auiewiriyanukul, Wataru Saburi, Haruhide Mori, et al.Biochimica Et Biophysica Acta|March 1, 2006
Structural elements in dextran glucosidase responsible for high specificity to long chain substrateWataru Saburi, Haruhide Mori, Saori Saito, et al.Biochimie|December 3, 2014
Biochemical properties and substrate recognition mechanism of GH31 α-glucosidase from Bacillus sp. AHU 2001 with broad substrate specificityWataru Saburi, Masayuki Okuyama, Yuya Kumagai, et al.The Journal of Biological Chemistry|December 24, 2013
Structural insights into the epimerization of β-1,4-linked oligosaccharides catalyzed by cellobiose 2-epimerase, the sole enzyme epimerizing non-anomeric hydroxyl groups of unmodified sugarsTakaaki Fujiwara, Wataru Saburi, Hirokazu Matsui, et al.Pageof 8