Abstract

The flavin cofactor of Escherichia coli DNA photolyase in its neutral radical form, FADH•, was investigated by high-frequency/high-field continuous-wave electron paramagnetic resonance at 360 GHz. The data presented are the first flavin radical spectra where the full rhombic symmetry of the g-tensor is resolved. A fit of the spectrum yields accurate principal values of g, which show only a small anisotropy: gX = 2.004 31(5), gY = 2.003 60(5) and gZ = 2.002 17(7). The hyperfine splitting observed in the gY region could be assigned to a hyperfine tensor component of the H(5) proton in the 7,8-dimethyl isoalloxazine moiety of FADH•. From a comparison of this effective hyperfine coupling with the principal value obtained from pulsed (Davies) electron−nuclear double resonance, the orientation of the g-tensor principal axes with respect to the H(5) hyperfine principal axes could be derived. Remaining ambiguities in the sign of the angle between the principal axes of g and the molecular axes are discussed by ta...

Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call