Voltammetric characterisation of the aerobic energy dissipating nitrate reductase of Paracoccus pantotrophus: exploring the activity of a redox balancing enzyme as a function of electrochemical potential - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Biochemical Journal Année : 2007

Voltammetric characterisation of the aerobic energy dissipating nitrate reductase of Paracoccus pantotrophus: exploring the activity of a redox balancing enzyme as a function of electrochemical potential

Andrew J Gates
  • Fonction : Auteur
David J Richardson
  • Fonction : Auteur

Résumé

Paracoccus pantotrophus expresses two nitrate reductases associated with respiratory electron transport, NapABC and NarGHI. Both enzymes derive electrons from ubiquinol to reduce nitrate to nitrite. However, while NarGHI harnesses the energy of the quinol/nitrate couple to generate a transmembrane proton gradient, NapABC dissipates the energy associated with these reducing equivalents. Here we explore the nitrate reductase activity of purified NapAB as a function of electrochemical potential, substrate concentration and pH using protein film voltammetry. Nitrate reduction by NapAB is shown to occur at potentials below ca. 0.1 V at pH 7. These are lower potentials than required for NarGH nitrate reduction. The potentials required for Nap nitrate reduction are also likely to require ubiquinol/ubiquinone ratios higher than are needed to activate the H +}-pumping oxidases expressed during aerobic growth where Nap levels are maximal. Thus, the operational potentials of P. pantotrophus NapAB are consistent with a productive role in redox balancing. A Michaelis constant (K M}) of ca. 45 µM was determined for NapAB nitrate reduction at pH 7. This is in line with studies on intact cells where nitrate reduction by Nap was described by a Monod constant (K S}) of less than 15 µM. The voltammetric studies also disclosed maximal NapAB activity in a narrow window of potential. This behaviour is resistant to change of pH, nitrate concentration and inhibitor concentration and its possible mechanistic origins are discussed.

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Dates et versions

hal-00478868 , version 1 (30-04-2010)

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Andrew J Gates, David J Richardson, Julea N Butt. Voltammetric characterisation of the aerobic energy dissipating nitrate reductase of Paracoccus pantotrophus: exploring the activity of a redox balancing enzyme as a function of electrochemical potential. Biochemical Journal, 2007, 409 (1), pp.159-168. ⟨10.1042/BJ20071088⟩. ⟨hal-00478868⟩

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