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Plant cell wall architecture guided design of CBM3-GH11 chimeras with enhanced xylanase activity using a tandem repeat left-handed β-3-prism scaffold

Comput Struct Biotechnol J. 2021-01; 
Matheus P Pinheiro, Renata A G Reis, Paul Dupree, Richard J Ward
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摘要

Effective use of plant biomass as an abundant and renewable feedstock for biofuel production and biorefinery requires efficient enzymatic mobilization of cell wall polymers. Knowledge of plant cell wall composition and architecture has been exploited to develop novel multifunctional enzymes with improved activity against lignocellulose, where a left-handed β-3-prism synthetic scaffold (BeSS) was designed for insertion of multiple protein domains at the prism vertices. This allowed construction of a series of chimeras fusing variable numbers of a GH11 β-endo-1,4-xylanase and the CipA-CBM3 with defined distances and constrained relative orientations between catalytic domains. The cellulose binding and endoxylan... More

关键词

Carbohydrate-binding module, Endoxylanase, Lignocellulose hydrolysis, Multifunctional protein, Protein design, Protein engineering, Synthetic biology