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- W3086030822 abstract "Heterotrophic bacterial communities are key players in marine biogeochemical cycling due to their ability to remineralize organic carbon. Processing of complex organic matter requires heterotrophic bacteria to produce extracellular enzymes with precise specificity to depolymerize substrates to sizes sufficiently small for uptake. Thus, extracellular enzymatic hydrolysis initiates microbe-driven heterotrophic carbon cycling. In this study, based on biochemical and structural analyses, we revealed the depolymerization mechanism of β-1,3-glucan, a carbon reserve in algae, by laminarinase from an alga-associated marine Flavobacterium . The findings provide new insights into the substrate recognition and catalysis of bacterial laminarinase and promote a better understanding of how extracellular enzymes are involved in organic matter cycling." @default.
- W3086030822 created "2020-09-21" @default.
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- W3086030822 date "2020-11-10" @default.
- W3086030822 modified "2023-10-18" @default.
- W3086030822 title "Molecular Basis for Substrate Recognition and Catalysis by a Marine Bacterial Laminarinase" @default.
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- W3086030822 doi "https://doi.org/10.1128/aem.01796-20" @default.
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