Title of article :
Retention of enzyme activity with a boron-doped diamond electrode in the electro-oxidative nitration of lysozyme
Author/Authors :
Jes?s Iniesta، نويسنده , , Mar?a Deseada Esclapez-Vicente، نويسنده , , John Heptinstall، نويسنده , , David J. Walton، نويسنده , , Ian R. Peterson، نويسنده , , Victor A. Mikhailov، نويسنده , , Helen J. Cooper، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2010
Pages :
7
From page :
472
To page :
478
Abstract :
In this paper we report the successful use of a non-metallic electrode material, boron-doped diamond (BDD), for the anodic electro-oxidative modification of hen egg white lysozyme (HEWL). Platinum electrodes can give rise to loss of activity of HEWL in electrosynthetic studies, whereas activity is retained on boron-doped diamond which is proposed as an effective substitute material for this purpose. We also compare literature methods of electrode pre-treatment to determine the most effective in electrosynthesis. Our findings show a decrease in total nitroprotein yield with decreasing nitrite concentration and an increase with increasing solution pH, confirming that, at a BDD electrode, the controlling factor remains the concentration of tyrosine phenolate anion. Purification of mono- and bis-nitrated HEWL and assay of enzymic activity showed better retention of activity at BDD electrode surfaces when compared to platinum. The products from electro-oxidation of HEWL at BDD were confirmed by electrospray ionization Fourier transform ion cyclotron resonance (ESI-FT-ICR) mass spectrometry, which revealed unique mass increases of +45 and +90 Da for the mono- and bis-nitrated lysozyme, respectively, corresponding to nitration at tyrosine residues. The nitration sites were confirmed as Tyr23 and Tyr20.
Keywords :
BDD , Electro-oxidative nitration , lysozyme , Tandem mass spectrometry , nitrotyrosine , Infrared multiphoton dissociation
Journal title :
Enzyme and Microbial Technology
Serial Year :
2010
Journal title :
Enzyme and Microbial Technology
Record number :
1185570
Link To Document :
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