The high resolution three-dimensional x-ray structure of the metal sit
es of bovine heart cytochrome c oxidase is reported. Cytochrome c oxid
ase is the largest membrane protein yet crystallized and analyzed at a
tomic resolution. Electron density distribution of the oxidized bovine
cytochrome c oxidase at 2.8 Angstrom resolution indicates a dinuclear
copper center with an unexpected structure similar to a [2Fe-2S]-type
iron-sulfur center. Previously predicted zinc and magnesium sites hav
e been located, the former bound by a nuclear encoded subunit on the m
atrix side of the membrane, and the latter situated between heme a(3)
and Cu-A, at the interface of subunits I and II. The O-2 binding site
contains heme a(3) iron and copper atoms (Cu-B) with an interatomic di
stance of 4.5 Angstrom; there is no detectable bridging ligand between
iron and copper atoms in spite of a strong antiferromagnetic coupling
between them. A hydrogen bond is present between a hydroxyl group of
the hydroxyfarnesylethyl side chain of heme a(3) and an OH of a tyrosi
ne. The tyrosine phenol plane is immediately adjacent and perpendicula
r to an imidazole group bonded to Cu-B, suggesting a possible role in
intramolecular electron transfer or conformational control, the latter
of which could induce the redox-coupled proton pumping. A phenyl grou
p located halfway between a pyrrole plane of the heme a(3) and an imid
azole plane liganded to the other home (heme a) could also influence e
lectron transfer or conformational control.