Host and Pathogen Copper-Transporting P-Type ATPases Function Antagonistically during Salmonella Infection

Author:

Ladomersky Erik12,Khan Aslam12,Shanbhag Vinit12,Cavet Jennifer S.3,Chan Jefferson4,Weisman Gary A.12,Petris Michael J.152

Affiliation:

1. Department of Biochemistry, University of Missouri, Columbia, Missouri, USA

2. Christopher S. Bond Life Science Center, University of Missouri, Columbia, Missouri, USA

3. Faculty of Biology Medicine and Health, University of Manchester, Manchester, United Kingdom

4. Departments of Chemistry and Molecular and Cell Biology, University of California, Berkeley, California, USA

5. Department of Nutrition and Exercise Physiology, University of Missouri, Columbia, Missouri, USA

Abstract

ABSTRACT Copper is an essential yet potentially toxic trace element that is required by all aerobic organisms. A key regulator of copper homeostasis in mammalian cells is the copper-transporting P-type ATPase ATP7A, which mediates copper transport from the cytoplasm into the secretory pathway, as well as copper export across the plasma membrane. Previous studies have shown that ATP7A-dependent copper transport is required for killing phagocytosed Escherichia coli in a cultured macrophage cell line. In this investigation, we expanded on these studies by generating Atp7a LysMcre mice, in which the Atp7a gene was specifically deleted in cells of the myeloid lineage, including macrophages. Primary macrophages isolated from Atp7a LysMcre mice exhibit decreased copper transport into phagosomal compartments and a reduced ability to kill Salmonella enterica serovar Typhimurium compared to that of macrophages isolated from wild-type mice. The Atp7a LysMcre mice were also more susceptible to systemic infection by S . Typhimurium than wild-type mice. Deletion of the S . Typhimurium copper exporters, CopA and GolT, was found to decrease infection in wild-type mice but not in the Atp7a LysMcre mice. These studies suggest that ATP7A-dependent copper transport into the phagosome mediates host defense against S . Typhimurium, which is counteracted by copper export from the bacteria via CopA and GolT. These findings reveal unique and opposing functions for copper transporters of the host and pathogen during infection.

Funder

HHS | NIH | National Institute of General Medical Sciences

HHS | NIH | National Institute of Diabetes and Digestive and Kidney Diseases

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Immunology,Microbiology,Parasitology

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