An exosome-based secretion pathway is responsible for protein export fromLeishmaniaand communication with macrophages

Author:

Silverman Judith Maxwell123,Clos Joachim4,de'Oliveira Carolina Camargo13,Shirvani Omid1,Fang Yuan56,Wang Christine1,Foster Leonard J.56,Reiner Neil E.123

Affiliation:

1. Departments of Medicine (Division of Infectious Diseases), University of British Columbia, Faculties of Medicine and Science, 2733 Heather St, Vancouver, BC V5Z 3J5, Canada

2. Microbiology and Immunology, University of British Columbia, Faculties of Medicine and Science, 2733 Heather St, Vancouver, BC V5Z 3J5, Canada

3. Vancouver Coastal Health Research Institute (VCHRI), 2733 Heather St, Vancouver, BC V5Z 3J5, Canada

4. Bernhard Nocht Institute for Tropical Medicine, Postfach 30 41 20, D-20324 Hamburg, Germany

5. Department of Biochemistry and Molecular Biology, University of British Columbia, 2350 Health Sciences Mall, Vancouver, BC V6T 1Z3, Canada

6. The Centre for High-Throughput Biology, University of British Columbia, 2350 Health Sciences Mall, Vancouver, BC V6T 1Z3, Canada

Abstract

Specialized secretion systems are used by numerous bacterial pathogens to export virulence factors into host target cells. Leishmania and other eukaryotic intracellular pathogens also deliver effector proteins into host cells; however, the mechanisms involved have remained elusive. In this report, we identify exosome-based secretion as a general mechanism for protein secretion by Leishmania, and show that exosomes are involved in the delivery of proteins into host target cells. Comparative quantitative proteomics unambiguously identified 329 proteins in Leishmania exosomes, accounting for >52% of global protein secretion from these organisms. Our findings demonstrate that infection-like stressors (37°C ± pH 5.5) upregulated exosome release more than twofold and also modified exosome protein composition. Leishmania exosomes and exosomal proteins were detected in the cytosolic compartment of infected macrophages and incubation of macrophages with exosomes selectively induced secretion of IL-8, but not TNF-α. We thus provide evidence for an apparently broad-based mechanism of protein export by Leishmania. Moreover, we describe a mechanism for the direct delivery of Leishmania molecules into macrophages. These findings suggest that, like mammalian exosomes, Leishmania exosomes function in long-range communication and immune modulation.

Publisher

The Company of Biologists

Subject

Cell Biology

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