Journal article
Redox sulfur chemistry of the copper chaperone Atox1 is regulated by the enzyme glutaredoxin 1, the reduction potential of the glutathione couple GSSG/2GSH and the availability of Cu(i)
J Brose, S La Fontaine, AG Wedd, Z Xiao
Metallomics | ROYAL SOC CHEMISTRY | Published : 2014
DOI: 10.1039/c4mt00020j
Abstract
Glutaredoxins have been characterised as enzymes regulating the redox status of protein thiols via cofactors GSSG/GSH. However, such a function has not been demonstrated with physiologically relevant protein substrates in in vitro experiments. Their active sites frequently feature a Cys-xx-Cys motif that is predicted not to bind metal ions. Such motifs are also present in copper-transporting proteins such as Atox1, a human cytosolic copper metallo-chaperone. In this work, we present the first demonstration that: (i) human glutaredoxin 1 (hGrx1) efficiently catalyses interchange of the dithiol and disulfide forms of the Cys12-xx-Cys15 fragment in Atox1 but does not act upon the isolated singl..
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Funding Acknowledgements
This work was supported by funds from the Australian Research Council under grants DP120100752 and DP130100728. We thank Dr Paul Donnelly (University of Melbourne) for valuable suggestions and discussion.