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Publication : <i>Trypanosoma musculi</i> Infection in Mice Critically Relies on Mannose Receptor-Mediated Arginase Induction by a <i>Tb</i>KHC1 Kinesin H Chain Homolog.

First Author  Nzoumbou-Boko R Year  2017
Journal  J Immunol Volume  199
Issue  5 Pages  1762-1771
PubMed ID  28739879 Mgi Jnum  J:287656
Mgi Id  MGI:6099184 Doi  10.4049/jimmunol.1700179
Citation  Nzoumbou-Boko R, et al. (2017) Trypanosoma musculi Infection in Mice Critically Relies on Mannose Receptor-Mediated Arginase Induction by a TbKHC1 Kinesin H Chain Homolog. J Immunol 199(5):1762-1771
abstractText  Arginase activity induction in macrophages is an escape mechanism developed by parasites to cope with the host''s immune defense and benefit from increased host-derived growth factor production. We report that arginase expression and activity were induced in macrophages during mouse infection by Trypanosoma musculi, a natural parasite of this host. This induction was reproduced in vitro by excreted/secreted factors of the parasite. A mAb directed to TbKHC1, an orphan kinesin H chain from Trypanosoma brucei, inhibited T. musculi excreted/secreted factor-mediated arginase induction. Anti-TbKHC1 Ab also inhibited T. musculi growth, both in vitro and in vivo. Induction of arginase activity and parasite growth involved C-type lectin receptors, because mannose injection decreased arginase activity induction and parasite load in vitro and in vivo. Accordingly, the parasite load was reduced in mice lacking mannose receptor C-type 1. The T. musculi KHC1 homolog showed high similarity with TbKHC1. Bioinformatics analysis revealed the presence of homologs of this gene in other trypanosomes, including pathogens for humans and animals. Host metabolism dysregulation represents an effective parasite mechanism to hamper the host immune response and modify host molecule production to favor parasite invasion and growth. Thus, this orphan kinesin plays an important role in promoting trypanosome infection, and its neutralization or the lock of its partner host molecules offers promising approaches to increasing resistance to infection and new developments in vaccination against trypanosomiasis.
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