Identification of the prooxidant site of human ceruloplasmin: A model for oxidative damage by copper bound to protein surfaces
- 14 October 1997
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 94 (21) , 11546-11551
- https://doi.org/10.1073/pnas.94.21.11546
Abstract
Free transition metal ions oxidize lipids and lipoproteins in vitro; however, recent evidence suggests that free metal ion-independent mechanisms are more likely in vivo. We have shown previously that human ceruloplasmin (Cp), a serum protein containing seven Cu atoms, induces low density lipoprotein oxidation in vitro and that the activity depends on the presence of a single, chelatable Cu atom. We here use biochemical and molecular approaches to determine the site responsible for Cp prooxidant activity. Experiments with the His-specific reagent diethylpyrocarbonate (DEPC) showed that one or more His residues was specifically required. Quantitative [14C]DEPC binding studies indicated the importance of a single His residue because only one was exposed upon removal of the prooxidant Cu. Plasmin digestion of [14C]DEPC-treated Cp (and N-terminal sequence analysis of the fragments) showed that the critical His was in a 17-kDa region containing four His residues in the second major sequence homology domain of Cp. A full length human Cp cDNA was modified by site-directed mutagenesis to give His-to-Ala substitutions at each of the four positions and was transfected into COS-7 cells, and low density lipoprotein oxidation was measured. The prooxidant site was localized to a region containing His426 because CpH426A almost completely lacked prooxidant activity whereas the other mutants expressed normal activity. These observations support the hypothesis that Cu bound at specific sites on protein surfaces can cause oxidative damage to macromolecules in their environment. Cp may serve as a model protein for understanding mechanisms of oxidant damage by copper-containing (or -binding) proteins such as Cu, Zn superoxide dismutase, and amyloid precursor protein.Keywords
This publication has 43 references indexed in Scilit:
- The Amyloid Precursor Protein of Alzheimer's Disease in the Reduction of Copper(II) to Copper(I)Science, 1996
- Role of endogenous ceruloplasmin in low density lipoprotein oxidation by human U937 monocytic cells.Journal of Clinical Investigation, 1996
- The X-ray structure of human serum ceruloplasmin at 3.1 Å: nature of the copper centresJBIC Journal of Biological Inorganic Chemistry, 1996
- Prooxidant iron and copper, with ferroxidase and xanthine oxidase activities in human atherosclerotic materialFEBS Letters, 1995
- Structure, oxidant activity, and cardiovascular mechanisms of human ceruloplasminLife Sciences, 1995
- Iron released from transferrin at acidic pH can catalyse the oxidation of low density lipoproteinFEBS Letters, 1994
- Peroxynitrite releases copper from caeruloplasmin: implications for atherosclerosisFEBS Letters, 1994
- Acidic pH enables caeruloplasmin to catalyse the modification of low‐density lipoproteinFEBS Letters, 1994
- Gene Dose of Apolipoprotein E Type 4 Allele and the Risk of Alzheimer's Disease in Late Onset FamiliesScience, 1993
- Tyrosyl radical generated by myeloperoxidase catalyzes the oxidative cross-linking of proteins.Journal of Clinical Investigation, 1993