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Four second-sphere residues of Thermus thermophilus SG0.5JP17-16 laccase tune the catalysis by hydrogen-bonding networks.

Appl. Microbiol. Biotechnol.. 2018-05; 
LiuHuiping,ZhuYanyun,YangXiaorong,Lin
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Gene Synthesis … lengths were analyzed. Mutagenesis, expression, and purification. The lacTT gene was optimized for E. coli expression using Optimum Gene technology and synthesized by GenScript Biotech Co. (Nanjing, China). The accession … Get A Quote

摘要

The multicopper oxidases catalyze 1-electron oxidation of four substrate molecules and concomitantly 4-electron reduction of dioxygen to water. The substrate loses the electrons at the type 1 copper (T1 Cu) site of the enzyme, while the dioxygen is reduced to water at the trinuclear copper center. A highly conserved Glu residue, which is at the dioxygen-entering channel, shuttles the proton to break the O-O bond of dioxygen. At the water-leaving channel, an Asp residue was found to be important in the protonation mechanism. In this study, laccase from Thermus thermophilus SG0.5JP17-16 (lacTT) was investigated to address how four second-sphere residues E356, E456, D106, and D423 affect the activi... More

关键词

Bacterial laccase,Enzyme kinetics,Enzyme mechanism,Homology modeling,Hydrogen-bonding net