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Modulation of the Immune Response by Nematode Secreted Acetylcholinesterase Revealed by Heterologous Expression in Trypanosoma musculi. | LitMetric

AI Article Synopsis

  • * Researchers have developed a method to express nematode proteins in the mouse parasite Trypanosoma musculi, allowing for the investigation of their immune-modulating effects.
  • * Infections with a modified Trypanosoma displaying nematode acetylcholinesterase led to a reduced presence of trypanosomes in mice and activated immune responses that favor M1 macrophages, indicating a potential role for nematode proteins in shifting immune responses to aid in parasite control.

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.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5089771PMC
http://dx.doi.org/10.1371/journal.ppat.1005998DOI Listing

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