The mitochondrial copper metallochaperone Cox17 exists as an oligomeric, polycopper complex

Citation
Dn. Heaton et al., The mitochondrial copper metallochaperone Cox17 exists as an oligomeric, polycopper complex, BIOCHEM, 40(3), 2001, pp. 743-751
Citations number
33
Categorie Soggetti
Biochemistry & Biophysics
Journal title
BIOCHEMISTRY
ISSN journal
00062960 → ACNP
Volume
40
Issue
3
Year of publication
2001
Pages
743 - 751
Database
ISI
SICI code
0006-2960(20010123)40:3<743:TMCMCE>2.0.ZU;2-R
Abstract
COX 17 is the candidate copper metallochaperone fbr delivery of copper ions to the mitochondrion for assembly of cytochrome c oxidase. Cox 17 purified as a recombinant molecule lacking any purification tag binds three Cu(I) i ons per monomer in a plolycopper cluster as shown by X-ray absorption spect roscopy. The CuCox17 complex exists in a dimer/tetramer equilibrium with a 20 muM k(d). The spectroscopic data do not discern whether the dimeric comp lex forms a single hexanuclear Cu(I) cluster or two separate trinuclear Cu( I) clusters. The Cu(I) cluster(s) exhibit(s) predominantly trigonal Cu(I) c oordination. The cluster(s) in CoX17 resemble(s) the polycopper clusters in Ace1 and the Cup1 metallothionein in being pH-stable and luminescent. The physical properties of the CuCox17 complex purified as an untagged molecule differ from those reported previously for a GST-Cox17 fusion protein. The CuCox17 cluster is distinct from the polycopper cluster in Cup1 in being la bile to ligand exchange. CuCox17 localized within the intermitochondrial me mbrane space appears to be predominantly tetrameric, whereas the cytosolic CuCox17 is primarily a dimeric species. Cys --> Ser substitutions at Cys23, Cys24, or Cys26 abolish the CoX17 function and prevent tetramerization, al though Cu(I) binding is largely unaffected. Thus, the oligomeric state of C ox17 may be important to its physiological function.