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GH11 xylanases: Structure/function/properties relationships and applications
Authors:Paës Gabriel  Berrin Jean-Guy  Beaugrand Johnny
Institution:INRA, UMR614 FARE, 2 esplanade Roland-Garros, F-51686 Reims, France. gabriel.paes@reims.inra.fr
Abstract:For technical, environmental and economical reasons, industrial demands for process-fitted enzymes have evolved drastically in the last decade. Therefore, continuous efforts are made in order to get insights into enzyme structure/function relationships to create improved biocatalysts. Xylanases are hemicellulolytic enzymes, which are responsible for the degradation of the heteroxylans constituting the lignocellulosic plant cell wall. Due to their variety, xylanases have been classified in glycoside hydrolase families GH5, GH8, GH10, GH11, GH30 and GH43 in the CAZy database. In this review, we focus on GH11 family, which is one of the best characterized GH families with bacterial and fungal members considered as true xylanases compared to the other families because of their high substrate specificity. Based on an exhaustive analysis of the sequences and 3D structures available so far, in relation with biochemical properties, we assess biochemical aspects of GH11 xylanases: structure, catalytic machinery, focus on their "thumb" loop of major importance in catalytic efficiency and substrate selectivity, inhibition, stability to pH and temperature. GH11 xylanases have for a long time been used as biotechnological tools in various industrial applications and represent in addition promising candidates for future other uses.
Keywords:AX  arabinoxylan  BCX  Bacillus circulans GH11 xylanase  CBD  cellulose-binding domain  CBM  carbohydrate binding module  CD  catalytic domain  Cel-12  GH12 cellulase  DP  degree of polymerization  GH  glycoside hydrolase  HX  heteroxylan  MW  molecular weight  XBD  xylan-binding domain  XOS  xylo-oligosaccharide  Xyl-10  GH10 xylanase  Xyl-11  GH11 xylanase
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