Title of article :
Flavin Specificity and Subunit Interaction of Vibrio fischeri General NAD(P)H-Flavin Oxidoreductase FRG/FRase I
Author/Authors :
Tang، نويسنده , , Chih-Kwang and Jeffers، نويسنده , , Christopher J. and Nichols، نويسنده , , Jeffry C and Tu، نويسنده , , Shiao-Chun، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2001
Abstract :
Apoenzyme of the major NAD(P)H-utilizing flavin reductase FRG/FRase I from Vibrio fischeri was prepared. The apoenzyme bound one FMN cofactor per enzyme monomer to yield fully active holoenzyme. The FMN cofactor binding resulted in substantial quenching of both the flavin and the protein fluorescence intensities without any significant shifts in the emission peaks. In addition to FMN binding (Kd 0.5 μM at 23°C), the apoenzyme also bound 2-thioFMN, FAD and riboflavin as a cofactor with Kd values of 1, 12, and 37 μM, respectively, at 23°C. The 2-thioFMN containing holoenzyme was about 40% active in specific activity as compared to the FMN-containing holoenzyme. The FAD- and riboflavin-reconstituted holoenzymes were also catalytically active but their specific activities were not determined. FRG/FRase I followed a ping-pong kinetic mechanism. It is proposed that the enzyme-bound FMN cofactor shuttles between the oxidized and the reduced form during catalysis. For both the FMN- and 2-thioFMN-containing holoenzymes, 2-thioFMN was about 30% active as compared to FMN as a substrate. FAD and riboflavin were also active substrates. FRG/FRase I was shown by ultracentrifugation at 4°C to undergo a monomer-dimer equilibrium, with Kd values of 18.0 and 13.4 μM for the apo- and holoenzymes, respectively. All the spectral, ligand equilibrium binding, and kinetic properties described above are most likely associated with the monomeric species of FRG/FRase I. Many aspects of these properties are compared with a structurally and functionally related Vibrio harveyi NADPH-specific flavin reductase FRP.
Keywords :
flavin binding , protein monomer–dimer equilibrium , apoenzyme , holoenzyme , flavin reductase , NAD(P)H-flavin oxidoreductases , Vibrio fischeri , Vibrio harveyi
Journal title :
Archives of Biochemistry and Biophysics
Journal title :
Archives of Biochemistry and Biophysics