Modulation of the immune response by nematode secreted acetylcholinesterase revealed by heterologous expression in Trypanosoma musculi
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Author(s)
Type
Journal Article
Abstract
Nematode parasites secrete molecules which regulate the mammalian immune system, but their genetic intractability is a major impediment to identifying and characterising the biological effects of these molecules. We describe here a novel system for heterologous expression of helminth secreted proteins in the natural parasite of mice, Trypanosoma musculi, which can be used to analyse putative immunomodulatory functions. Trypanosomes were engineered to express a secreted acetylcholinesterase from Nippostrongylus brasiliensis. Infection of mice with transgenic parasites expressing acetylcholinesterase resulted in truncated infection, with trypanosomes cleared early from the circulation. Analysis of cellular phenotypes indicated that exposure to acetylcholinesterase in vivo promoted classical activation of macrophages (M1), with elevated production of nitric oxide and lowered arginase activity. This most likely occurred due to the altered cytokine environment, as splenocytes from mice infected with T. musculi expressing acetylcholinesterase showed enhanced production of IFNγ and TNFα, with diminished IL-4, IL-13 and IL-5. These results suggest that one of the functions of nematode secreted acetylcholinesterase may be to alter the cytokine environment in order to inhibit development of M2 macrophages which are deleterious to parasite survival. Transgenic T. musculi represents a valuable new vehicle to screen for novel immunoregulatory proteins by extracellular delivery in vivo to the murine host.
Date Issued
2016-11-01
Date Acceptance
2016-10-13
Citation
PLOS Pathogens, 2016, 12 (11), pp.1-18
ISSN
1553-7366
Publisher
Public Library of Science
Start Page
1
End Page
18
Journal / Book Title
PLOS Pathogens
Volume
12
Issue
11
Copyright Statement
©
2016
Vaux
et al. This is an open
access
article
distributed
under
the terms
of the
Creative
Commons
Attribution
License (https://creativecommons.org/licenses/by/4.0/),
which
permits
unrestricte
d use, distribu
tion, and
reproduction
in any medium,
provided
the original
author
and source
are credited.
2016
Vaux
et al. This is an open
access
article
distributed
under
the terms
of the
Creative
Commons
Attribution
License (https://creativecommons.org/licenses/by/4.0/),
which
permits
unrestricte
d use, distribu
tion, and
reproduction
in any medium,
provided
the original
author
and source
are credited.
Sponsor
The Leverhulme Trust
Wellcome Trust
Identifier
http://www.ncbi.nlm.nih.gov/pubmed/27802350
PII: PPATHOGENS-D-16-00779
Grant Number
RPG-2014-374
097011/Z/11/Z
Subjects
Science & Technology
Life Sciences & Biomedicine
Microbiology
Parasitology
Virology
CHRONICALLY INFECTED MICE
BLOOD-STREAM FORMS
NIPPOSTRONGYLUS-BRASILIENSIS
MACROPHAGES
PROTEIN
RESISTANCE
PARASITES
BRUCEI
SYSTEM
GENE
Acetylcholinesterase
Animals
Disease Models, Animal
Enzyme-Linked Immunosorbent Assay
Flow Cytometry
Fluorescent Antibody Technique
Immunoblotting
Mice
Organisms, Genetically Modified
Protozoan Proteins
Real-Time Polymerase Chain Reaction
Trypanosoma
Trypanosomiasis
Animals
Organisms, Genetically Modified
Mice
Trypanosoma
Trypanosomiasis
Disease Models, Animal
Acetylcholinesterase
Protozoan Proteins
Fluorescent Antibody Technique
Immunoblotting
Enzyme-Linked Immunosorbent Assay
Flow Cytometry
Real-Time Polymerase Chain Reaction
0605 Microbiology
1107 Immunology
1108 Medical Microbiology
Virology
Publication Status
Published
Coverage Spatial
United States
Article Number
e1005998
Date Publish Online
2016-11-01