The mammalian phosphate carrier SLC25A3 is a mitochondrial copper transporter required for cytochrome c oxidase biogenesis

  1. Paul A. Cobine5*
  1. 1University of Saskatchewan, Canada
  2. 2Auburn University, United States
  3. 3Emory University, United States
  4. 4University of Texas at Dallas, United States
  5. 5Biological Sciences, Auburn University, United States
  1. * Corresponding author; email: paul.cobine{at}auburn.edu
  1. Author contributions: A.B., K.E.V., M.K.M., M.G.G., A.C.R., A.T.M., S.E.C., X.Z., C.B.P., J.Q.K., S.C.D., and P.A.C. investigation; A.B., S.C.L., and P.A.C. writing-review and editing; K.E.V. and P.A.C. conceptualization; K.E.V., S.C.L., and P.A.C. writing-original draft; S.C.D. and P.A.C. methodology; S.C.L. and P.A.C. formal analysis; S.C.L. and P.A.C. funding acquisition; P.A.C. data curation; P.A.C. supervision; P.A.C. project administration.

Abstract

Copper is required for the activity of cytochrome c oxidase (COX), the terminal electron-accepting complex of the mitochondrial respiratory chain. The likely source of copper used for COX biogenesis is a labile pool found in the mitochondrial matrix. In mammals, the proteins that transport copper across the inner mitochondrial membrane remain unknown. We previously reported that the mitochondrial carrier family protein Pic2 in budding yeast is a copper importer. The closest Pic2 orthologue in mammalian cells is the mitochondrial phosphate carrier SLC25A3. Here, to investigate whether SLC25A3 also transports copper, we manipulated its expression in several murine and human cell lines. SLC25A3 knockdown or deletion consistently resulted in an isolated COX deficiency in these cells, and copper addition to the culture medium suppressed these biochemical defects. Consistent with a conserved role for SLC25A3 in copper transport, its heterologous expression in yeast complemented copper-specific defects observed upon deletion of PIC2. Additionally, assays in Lactococcus lactis and in reconstituted liposomes directly demonstrated that SLC25A3 functions as a copper transporter. Taken together, these data indicate that SLC25A3 can transport copper both in vitro and in vivo.

  • Received October 3, 2017.
  • Accepted December 13, 2017.

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