Regulation of murine copper homeostasis by members of the COMMD protein family

Author:

Singla Amika1,Chen Qing12,Suzuki Kohei1,Song Jie1,Fedoseienko Alina34,Wijers Melinde3,Lopez Adam1,Billadeau Daniel D.4,van de Sluis Bart3ORCID,Burstein Ezra15ORCID

Affiliation:

1. Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA

2. Department of General Surgery, Tongji Hospital, Tongji School of Medicine, Shanghai 200065, China

3. Section of Molecular Genetics, Department of Pediatrics, University of Groningen, University Medical Center Groningen, Antonius Deusinglaan 1, 9713 AV Groningen, The Netherlands

4. Division of Oncology Research, College of Medicine, Mayo Clinic, Rochester, MN 55905, USA

5. Department of Molecular Biology, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA

Abstract

ABSTRACT Copper is an essential transition metal for all eukaryotes. In mammals, intestinal copper absorption is mediated by the ATP7A copper transporter, whereas copper excretion occurs predominantly through the biliary route and is mediated by the paralog ATP7B. Both transporters have been shown to be recycled actively between the endosomal network and the plasma membrane by a molecular machinery known as the COMMD/CCDC22/CCDC93 or CCC complex. In fact, mutations in COMMD1 can lead to impaired biliary copper excretion and liver pathology in dogs and in mice with liver-specific Commd1 deficiency, recapitulating aspects of this phenotype. Nonetheless, the role of the CCC complex in intestinal copper absorption in vivo has not been studied, and the potential redundancy of various COMMD family members has not been tested. In this study, we examined copper homeostasis in enterocyte-specific and hepatocyte-specific COMMD gene-deficient mice. We found that, in contrast to effects in cell lines in culture, COMMD protein deficiency induced minimal changes in ATP7A in enterocytes and did not lead to altered copper levels under low- or high-copper diets, suggesting that regulation of ATP7A in enterocytes is not of physiological consequence. By contrast, deficiency of any of three COMMD genes (Commd1, Commd6 or Commd9) resulted in hepatic copper accumulation under high-copper diets. We found that each of these deficiencies caused destabilization of the entire CCC complex and suggest that this might explain their shared phenotype. Overall, we conclude that the CCC complex plays an important role in ATP7B endosomal recycling and function.

Funder

National Institutes of Health

Aard- en Levenswetenschappen, Nederlandse Organisatie voor Wetenschappelijk Onderzoek

Cordis

Jan Kornelis de Cock Stichting

Publisher

The Company of Biologists

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology and Microbiology (miscellaneous),Medicine (miscellaneous),Neuroscience (miscellaneous)

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