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PMID: 11700301 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Nramp1 modifies the fusion of Salmonella typhimurium-containing vacuoles with cellular endomembranes in macrophages.

The Journal of biological chemistry ·Vol. 277 ·No. 3 ·2002-01-18 ·Pages 2258-65

Cuellar-Mata P, Jabado N, Liu J, Furuya W, Finlay BB, Gros P, Grinstein S

Abstract

Salmonella survive and replicate within mammalian cells by becoming secluded within specialized membrane-bound vacuoles inaccessible to the host defense mechanisms. Delayed acidification of the vacuole and its incomplete fusion with lysosomes have been implicated in intracellular Salmonella survival. Nramp1 confers to macrophages resistance to a variety of intracellular pathogens, including Salmonella, but its precise mode of action is not understood. We investigated whether Nramp1 affects the maturation and acidification of Salmonella-containing vacuoles (SCV). A mouse-derived macrophage line (RAW/Nramp1(-)) devoid of Nramp1 and therefore susceptible to infection was compared with isogenic clones stably transfected with Nramp1 (RAW/Nramp1(+)). Intravacuolar pH, measured in situ, was similar in Nramp1-expressing and -deficient cells. SCV acquired LAMP1 and fused with preloaded fluid-phase markers in both cell types. In contrast, although few vacuoles in RAW/Nramp1(-) acquired mannose 6-phosphate receptor, many more contained M6PR in RAW/Nramp1(+) cells. Shortly after closure, SCV in RAW/Nramp1(-) became inaccessible to extracellular markers, suggesting inability to fuse with newly formed endosomes. Expression of Nramp1 markedly increased the access to extracellularly added markers. We propose that Nramp1 counteracts the ability of Salmonella to become secluded in a compartment that limits access of bactericidal agents, allowing the normal degradative pathway of the macrophage to proceed.

MeSH Terms
Animals Cation Transport Proteins/physiology Cell Line, Transformed Hydrogen-Ion Concentration Intracellular Membranes/microbiology Macrophages/microbiology,ultrastructure Mice Receptor, IGF Type 2/metabolism Salmonella typhimurium/physiology Vacuoles/microbiology
Chemicals
Cation Transport Proteins Receptor, IGF Type 2 natural resistance-associated macrophage protein 1
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Cuellar-Mata Patricia
Division of Cell Biology, Hospital for Sick Children, Toronto M5G 1X8, Ontario, Canada.
Jabado Nada
Liu Jun
Furuya Wendy
Finlay B Brett
Gros Philippe
Grinstein Sergio
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2002-01-18
Epub
2001-00-07
Pages
2258-65
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NIAID NIH HHS · AI-35237 · United States
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