Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10872492 | FEBS Letters | 2008 | 5 Pages |
Abstract
Fucosyloligosaccharides have great therapeutic potential. Here we present a new route for synthesizing a Fucα1,2Gal linkage by introducing glycosynthase technology into 1,2-α-l-fucosidase. The enzyme adopts a unique reaction mechanism, in which asparagine-423 activated by aspartic acid-766 acts as a base while asparagine-421 fixes both a catalytic water and glutamic acid-566 (an acid) in the proper orientations. Glycosynthase activity of N421G, N423G, and D766G mutants was examined using β-fucosyl fluoride and lactose, and among them, the D766G mutant most effectively synthesized 2â²-fucosyllactose. 1,2-α-l-Fucosynthase is the first glycosynthase derived from an inverting α-glycosidase and from a glycosidase with an unusual reaction mechanism.
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Authors
Jun Wada, Yuji Honda, Masamichi Nagae, Ryuichi Kato, Soichi Wakatsuki, Takane Katayama, Hajime Taniguchi, Hidehiko Kumagai, Motomitsu Kitaoka, Kenji Yamamoto,