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A new carbohydrate-active oligosaccharide dehydratase is involved in the degradation of ulvan

J Biol Chem. 2021-09; 
Marcus Bäumgen, Theresa Dutschei, Daniel Bartosik, Christoph Suster, Lukas Reisky, Nadine Gerlach, Christian Stanetty, Marko D Mihovilovic, Thomas Schweder, Jan-Hendrik Hehemann, Uwe T Bornscheuer
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摘要

Marine algae catalyze half of all global photosynthetic production of carbohydrates. Owing to their fast growth rates, Ulva spp. rapidly produce substantial amounts of carbohydrate-rich biomass and represent an emerging renewable energy and carbon resource. Their major cell wall polysaccharide is the anionic carbohydrate ulvan. Here, we describe a new enzymatic degradation pathway of the marine bacterium Formosa agariphila for ulvan oligosaccharides involving unsaturated uronic acid at the nonreducing end linked to rhamnose-3-sulfate and glucuronic or iduronic acid (Δ-Rha3S-GlcA/IdoA-Rha3S). Notably, we discovered a new dehydratase (P29_PDnc) acting on the nonreducing end of ulvan oligosaccharides, i.e., GlcA/... More

关键词

carbohydrate-active enzymes, dehydratase, enzyme mechanism, glycoside hydrolase, marine polysaccharide, novel enzyme, pathway elucidation, sulfatase, ulvan