Issue 47, 2013

Direct electron transfer to a metagenome-derived laccase fused to affinity tags near the electroactive copper site

Abstract

We demonstrate the efficient direct electron transfer (DET) from an electrode to an engineered laccase isolated from a metagenome. The enzyme has a unique homotrimeric architecture with a two-domain-type laccase subunit. The recombinant laccase-modified mesoporous carbon electrode exhibits an effective catalytic current for oxygen reduction, which depends on the affinity tags attached near the electroactive Cu site of the enzyme. We also investigated the effect of the affinity tags on the orientation of the enzyme on functional thiol-modified Au electrodes. The results suggest that a poly-histidine tag (His-tag) functions as an anchor to control the orientation of the enzyme to enhance the current density of the DET-type bioelectrocatalysis.

Graphical abstract: Direct electron transfer to a metagenome-derived laccase fused to affinity tags near the electroactive copper site

Supplementary files

Article information

Article type
Paper
Submitted
23 Jul 2013
Accepted
17 Oct 2013
First published
21 Oct 2013

Phys. Chem. Chem. Phys., 2013,15, 20585-20589

Direct electron transfer to a metagenome-derived laccase fused to affinity tags near the electroactive copper site

S. Tsujimura, M. Asahi, M. Goda-Tsutsumi, O. Shirai, K. Kano and K. Miyazaki, Phys. Chem. Chem. Phys., 2013, 15, 20585 DOI: 10.1039/C3CP53096E

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