Copper binding traps the folded state of the SCO protein from Bacillus subtilis

The SCO protein from the aerobic bacterium Bacillus subtilis (BsSCO) is involved in the assembly of the cytochrome c oxidase complex, and specifically with the CuA center. BsSCO has been proposed to play various roles in CuA assembly including, the direct delivery of copper ions to the CuA site, and...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Biochimica et biophysica acta 2012-02, Vol.1824 (2), p.292-302
Hauptverfasser: Lai, Mark, Yam, Katherine C., Andrews, Diann, Hill, Bruce C.
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:The SCO protein from the aerobic bacterium Bacillus subtilis (BsSCO) is involved in the assembly of the cytochrome c oxidase complex, and specifically with the CuA center. BsSCO has been proposed to play various roles in CuA assembly including, the direct delivery of copper ions to the CuA site, and/or maintaining the appropriate redox state of the cysteine ligands during formation of CuA. BsSCO binds copper in both Cu(II) and Cu(I) redox states, but has a million-fold higher affinity for Cu(II). As a prerequisite to kinetic studies, we measured equilibrium stability of oxidized, reduced and Cu(II)-bound BsSCO by chemical and thermal induced denaturation. Oxidized and reduced apo-BsSCO exhibit two-state behavior in both chemical- and thermal-induced unfolding. However, the Cu(II) complex of BsSCO is stable in up to nine molar urea. Thermal or guanidinium-induced unfolding of BsSCO-Cu(II) ensues only as the Cu(II) species is lost. The effect of copper (II) on the folding of BsSCO is complicated by a rapid redox reaction between copper and reduced, denatured BsSCO. When denatured apo-BsSCO is refolded in the presence of copper (II) some of the population is recovered as the BsSCO-Cu(II) complex and some is oxidized indicating that refolding and oxidation are competing processes. The proposed functional roles for BsSCO in vivo require that its cysteine residues are reduced and the presence of copper during folding may be detrimental to BsSCO attaining its functional state. ► apo-BsSCO behaves as a two-state protein in kinetic and equilibrium studies. ► Cu(II) binding stabilizes reduced BsSCO making unfolding extremely slow. ►Cu(II) rapidly oxidizes the two cysteines of denature BsSCO. ► BsSCO folding with Cu(II) is a competition between oxidation and folding.
ISSN:1570-9639
0006-3002
1878-1454
DOI:10.1016/j.bbapap.2011.10.006