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The plant cell-wall enzyme AtXTH3 catalyses covalent cross-linking between cellulose and cello-oligosaccharide.

Sci Rep. 2017; 
ShinoharaNaoki,SunagawaNaoki,TamuraSatoru,YokoyamaRyusuke,UedaMinoru,IgarashiKiyohiko,NishitaniKazu
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Codon Optimization … The partial amino acid sequences of AtXTH22 and AtXTH3, excluding their signal peptides, were subjected to codon-optimization for P. pastoris, and the optimized nucleotide sequences were then synthetized by a commercial DNA synthesis service (GenScript) … Get A Quote

摘要

Cellulose is an economically important material, but routes of its industrial processing have not been fully explored. The plant cell wall - the major source of cellulose - harbours enzymes of the xyloglucan endotransglucosylase/hydrolase (XTH) family. This class of enzymes is unique in that it is capable of elongating polysaccharide chains without the requirement for activated nucleotide sugars (e.g., UDP-glucose) and in seamlessly splitting and reconnecting chains of xyloglucan, a naturally occurring soluble analogue of cellulose. Here, we show that a recombinant version of AtXTH3, a thus far uncharacterized member of the Arabidopsis XTH family, catalysed the transglycosylation between cellulose a... More

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