1. Academic Validation
  2. Fully integrated biocatalytic electrodes based on bioaffinity interactions

Fully integrated biocatalytic electrodes based on bioaffinity interactions

  • Biosens Bioelectron. 1998 Oct 1;13(7-8):741-56. doi: 10.1016/s0956-5663(98)00038-4.
E Katz 1 V Heleg-Shabtai A Bardea I Willner H K Rau W Haehnel
Affiliations

Affiliation

  • 1 Institute of Chemistry, Hebrew University of Jerusalem, Israel. ekatz@vms.huji.ac.il
Abstract

Integrated bioelectrocatalytically active electrodes are assembled by the deposition of Enzymes onto respective electrically contacted affinity matrices and further cross-linking of the Enzyme monolayers. A catalyst-NAD(+)-dyad for the binding of the NAD(+)-dependent Enzymes and cytochrome-like molecules for the binding of the heme-protein-dependent Enzymes are used to construct integrated electrically contacted biocatalytic systems. NAD(+)-dependent Lactate Dehydrogenase (LDH) is assembled onto a pyrroloquinoline quinone-NAD+ monolayer. The redox-active monolayer is organized via covalent attachment of pyrroloquinoline quinone (PQQ) to a cystamine monolayer associated with a Au-electrode, followed by covalent linkage of N6-(2-aminoethyl)-NAD+ to the monolayer. The interface modified with the PQQ-NAD(+)-dyad provides temporary affinity binding for LDH and allows cross-linking of the Enzyme monolayer. The cross-linked LDH is bioelectrocatalytically active towards oxidation of lactate. The bioelectrocatalyzed process involves the PQQ-mediated oxidation of the immobilized NADH. Integrated, electrically contacted bioelectrodes are produced by the affinity binding and further cross-linking of nitrate reductase (NR) (cytochrome-dependent, E.C. 1.9.6.1 from E. coli) or CoII-protoporphyrin IX reconstituted myoglobin (CoII-Mb) atop the microperoxidase-11 (MP-11) monolayer associated with a Au-electrode. The MP-11 monolayer provides an affinity interface for the temporary binding of the Enzymes, that allows the cross-linkage of the Enzyme molecules. The MP-11 assembly acts as electron transfer mediator for the reduction of the secondary Enzyme layer. The integrated bioelectrodes consisting of NR and CoII-Mb show catalytic activities for NO3- reduction and acetylene-dicarboxylic acid hydrogenation, respectively. Two FeIII-protoporphyrin IX units are reconstituted into a four alpha-helix bundle de novo protein assembled as a monolayer on a Au-electrode. Vectorial electron transfer proceeds in the synthetic heme-protein monolayer. Cross-linking of an affinity complex generated between the FeIII-protoporphyrin IX reconstituted de novo protein monolayer and NR yields an integrated, electrically contacted Enzyme electrode that stimulates the bioelectrocatalyzed reduction of nitrate.

Figures
Products