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Characterization of the Biomass Degrading Enzyme GuxA from

Int J Mol Sci. 2022-05; 
Neal N Hengge, Sam J B Mallinson, Patthra Pason, Vladimir V Lunin, Markus Alahuhta, Daehwan Chung, Michael E Himmel, Janet Westpheling, Yannick J Bomble
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Custom Vector Construction … DNA sequences for the GuxA GH12 domain was codon optimized and cloned into a pET22b(+) vector (GenScript, Piscataway, NJ, USA). The sequence for a hexahistidine tag was … Get A Quote

摘要

Microbial conversion of biomass relies on a complex combination of enzyme systems promoting synergy to overcome biomass recalcitrance. Some thermophilic bacteria have been shown to exhibit particularly high levels of cellulolytic activity, making them of particular interest for biomass conversion. These bacteria use varying combinations of CAZymes that vary in complexity from a single catalytic domain to large multi-modular and multi-functional architectures to deconstruct biomass. Since the discovery of CelA from Caldicellulosiruptor bescii which was identified as one of the most active cellulase so far identified, the search for efficient multi-modular and multi-functional CAZymes has intensified. One of thes... More

关键词

CAZymes, cellulose, enzyme synergy, lignocellulosic biomass, multifunctional enzymes, xylan