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Structural determinants of bacterial lytic polysaccharide monooxygenase functionality.

J. Biol. Chem.. 2018; 
ForsbergZarah,BissaroBastien,GullesenJonathan,DalhusBjørn,Vaaje-KolstadGustav,EijsinkVincent
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Peptide Synthesis Cloning, expression and purification – Codonoptimized genes encoding the Micromonospora aurantiaca ATCC 27029 LPMO10s MaLPMO10B (residue 1-366; UniProtKB D9SZQ3; signal peptide + LPMO domain + CBM2 domain) and MaLPMO10D (residue 36-355; UniProtKB D9T1F0; LPMO domain + CBM2 domain) were purchased from GenScript (Piscataway, NJ, USA) Get A Quote

摘要

Bacterial lytic polysaccharide monooxygenases (LPMO10s) use redox chemistry to cleave glycosidic bonds in the two foremost recalcitrant polysaccharides found in nature, namely cellulose and chitin. Analysis of correlated mutations revealed that the substrate-binding and copper-containing surface of LPMO10s composes a network of co-evolved residues and interactions, whose roles in LPMO functionality are unclear. Here, we mutated a subset of these correlated residues in a newly characterized C1/C4-oxidizing LPMO10 from (LPMO10B) to the corresponding residues in strictly C1-oxidizing LPMO10s. We found that surface properties near the catalytic copper, side chains likely to be involved in substrate positi... More

关键词

LPMO,cellulose,chitin,hydrogen peroxide,protein evolution,regioselectivity,site-directed mutagenesis,substrate specifi
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