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Structure-based Engineering of a Plant-Fungal Hybrid Peroxidase for Enhanced Temperature and pH Tolerance.

Cell Chem Biol. 2018; 
Kohler AC, Simmons BA, Sale KL.
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Codon Optimization 69864 This paper; GenScript This paper; GenScript N/A N/A VP2....0 (915 bp) genes were codon optimized for expression in Escherichia coli, synthesized (GenScript), and cloned into the pET-28a(+) expression vector (Novagen-EMD Millipore) between the NheI and NotI restriction sites. Get A Quote

摘要

In an age of ever-increasing biotechnological and industrial demand for new and specialized biocatalysts, rational protein engineering offers a direct approach to enzyme design and innovation. Heme peroxidases, as indispensable oxidative biocatalysts, provide a relatively mild alternative to the traditional harsh, and often toxic, chemical catalysts, and subsequently, have found widespread application throughout industry. However, the potential for these enzymes is far greater than their present use, as processes are currently restricted to the more stable, but less catalytically powerful, subset of peroxidases. Here we describe the structure-guided, rational engineering of a plant-fungal hybrid peroxidase b... More

关键词

biocatalysis; biofuels; enzyme engineering; enzymes; lignin; oxidation; peroxidases
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