Repozytorium

A structural-dynamical characterization of human Cox17.

Autorzy

L. Banci

I. Bertini

S. Ciofi-Baffoni

Anna Janicka

M. Martinelli

Henryk Kozłowski

P. Palumaa

Rok wydania

2008

Czasopismo

Journal of Biological Chemistry

Numer woluminu

283

Strony

7912-7920

DOI

10.1074/jbc.M708016200

Kolekcja

Naukowa

Język

Angielski

Typ publikacji

Artykuł

Streszczenie

Human Cox17 is a key mitochondrial copper chaperone responsible for supplying copper ions, through the assistance of Sco1, Sco2, and Cox11, to cytochrome c oxidase, the terminal enzyme of the mitochondrial energy transducing respiratory chain. A structural and dynamical characterization of human Cox17 in its various functional metallated and redox states is presented here. The NMR solution structure of the partially oxidized Cox17 (Cox172S-S) consists of a coiled coil-helix-coiled coil-helix domain stabilized by two disulfide bonds involving Cys25-Cys54 and Cys35-Cys44, preceded by a flexible and completely unstructured N-terminal tail. In human Cu(I)Cox172S-S the copper(I) ion is coordinated by the sulfurs of Cys22 and Cys23, and this is the first example of a Cys-Cys binding motif in copper proteins. Copper(I) binding as well as the formation of a third disulfide involving Cys22 and Cys23 cause structural and dynamical changes only restricted to the metal-binding region. Redox properties of the disulfides of human Cox17, here investigated, strongly support the current hypothesis that the unstructured fully reduced Cox17 protein is present in the cytoplasm and enters the intermembrane space (IMS) where is then oxidized by Mia40 to Cox172S-S, thus becoming partially structured and trapped into the IMS. Cox172S-S is the functional species in the IMS, it can bind only one copper(I) ion and is then ready to enter the pathway of copper delivery to cytochrome c oxidase. The copper(I) form of Cox172S-S has features specific for copper chaperones.

Adres publiczny

https://doi.org/10.1074/jbc.M708016200

Strona internetowa wydawcy

https://www.asbmb.org/

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