H. Hori et al., EPR STUDY OF NO COMPLEX OF BD-TYPE UBIQUINOL OXIDASE FROM ESCHERICHIA-COLI - THE PROXIMAL AXIAL LIGAND OF HEME-D IS A NITROGENOUS AMINO-ACID RESIDUE, The Journal of biological chemistry, 271(16), 1996, pp. 9254-9258
The heme axial ligands of bd-type ubiquinol oxidase of Escherichia col
i were studied by EPR and optical spectroscopies using nitric oxide (N
O) as a monitoring probe. We found that NO bound to ferrous heme d of
the air-oxidized and fully reduced enzymes with very high affinity and
to ferrous heme b(595) of the fully reduced enzyme with low affinity.
EPR spectrum of the (NO)-N-14 complex of the reduced enzyme exhibited
an axially symmetric signal with g-values at g(perpendicular to) = 2.
041 and g(parallel to) = 1.993 and a clear triplet of triplet (or a tr
iplet of doublet for the (NO)-N-15 complex) superhyperfine structure o
riginating from a nitrogenous proximal ligand trans to NO was observed
. This EPR species was assigned to the ferrous heme d-NO complex. This
suggests that the proximal axial ligand of heme d is a histidine resi
due in an anomalous condition or other nitrogenous amino acid residue.
Furthermore, the EPR line shape of the ferrous heme d-NO was slightly
influenced by the oxidation state of the heme b(595). This indicates
that heme d exists in close proximity to heme b(595) forming a binucle
ar center. Another axially symmetric EPR signal with g-values at g(par
allel to) = 2.108 and g(perpendicular to) = 2.020 appeared after prolo
nged incubation of the reduced enzyme with NO and was attributed to th
e ferrous heme b(595)-NO complex.