Purification and membrane reconstitution of catalytically active Menkes copper-transporting P-type ATPase (MNK; ATP7A)

Author:

Hung Ya Hui1,Layton Meredith J.2,Voskoboinik Ilia1,Mercer Julian F. B.3,Camakaris James1

Affiliation:

1. Department of Genetics, University of Melbourne, VIC 3010, Australia

2. Joint Proteomics Laboratory, Ludwig Institute for Cancer Research and Walter and Eliza Hall Institute of Medical Research, Parkville, VIC 3050, Australia

3. Centre for Cellular and Molecular Biology, School of Life and Environmental Sciences, Deakin University, Burwood, VIC 3125, Australia

Abstract

The MNK (Menkes disease protein; ATP7A) is a major copper- transporting P-type ATPase involved in the delivery of copper to cuproenzymes in the secretory pathway and the efflux of excess copper from extrahepatic tissues. Mutations in the MNK (ATP7A) gene result in Menkes disease, a fatal neurodegenerative copper deficiency disorder. Currently, detailed biochemical and biophysical analyses of MNK to better understand its mechanisms of copper transport are not possible due to the lack of purified MNK in an active form. To address this issue, we expressed human MNK with an N-terminal Glu-Glu tag in Sf9 [Spodoptera frugiperda (fall armyworm) 9] insect cells and purified it by antibody affinity chromatography followed by size-exclusion chromatography in the presence of the non-ionic detergent DDM (n-dodecyl β-D-maltopyranoside). Formation of the classical vanadate-sensitive phosphoenzyme by purified MNK was activated by Cu(I) [EC50=0.7 μM; h (Hill coefficient) was 4.6]. Furthermore, we report the first measurement of Cu(I)-dependent ATPase activity of MNK (K0.5=0.6 μM; h=5.0). The purified MNK demonstrated active ATP-dependent vectorial 64Cu transport when reconstituted into soya-bean asolectin liposomes. Together, these data demonstrated that Cu(I) interacts with MNK in a co-operative manner and with high affinity in the sub-micromolar range. The present study provides the first biochemical characterization of a purified full-length mammalian copper-transporting P-type ATPase associated with a human disease.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

Reference58 articles.

1. Isolation of a candidate gene for Menkes disease that encodes a potential heavy metal binding protein;Chelly;Nat. Genet.,1993

2. Isolation of a partial candidate gene for Menkes disease by positional cloning;Mercer;Nat. Genet.,1993

3. Isolation of a candidate gene for Menkes disease and evidence that it encodes a copper-transporting ATPase;Vulpe;Nat. Genet.,1993

4. Menkes's kinky hair syndrome. An inherited defect in copper absorption with widespread effects;Danks;Pediatrics,1972

5. A sex-linked recessive disorder with retardation of growth and peculiar hair, and focal cerebral and cerebellar degeneration;Menkes;Pediatrics,1962

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