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Development of a novel CD4+ TCR transgenic line that reveals a dominant role for CD8+ dendritic cells and CD40 signaling in the generation of helper and CTL responses to blood-stage malaria

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posted on 2017-12-15, 00:00 authored by D Fernandez-Ruiz, L S Lau, N Ghazanfari, C M Jones, W Y Ng, G M Davey, D Berthold, L Holz, Y Kato, M H Enders, G Bayarsaikhan, S H Hendriks, L I M Lansink, J A Engel, M S F Soon, K R James, A Cozijnsen, V Mollard, A D Uboldi, C J Tonkin, Tania De Koning-WardTania De Koning-Ward, P R Gilson, T Kaisho, A Haque, B S Crabb, F R Carbone, G I McFadden, W R Heath
We describe an MHC class II (I-Ab)-restricted TCR transgenic mouse line that produces CD4+ T cells specific for Plasmodium species. This line, termed PbT-II, was derived from a CD4+ T cell hybridoma generated to blood-stage Plasmodium berghei ANKA (PbA). PbT-II cells responded to all Plasmodium species and stages tested so far, including rodent (PbA, P. berghei NK65, Plasmodium chabaudi AS, and Plasmodium yoelii 17XNL) and human (Plasmodium falciparum) blood-stage parasites as well as irradiated PbA sporozoites. PbT-II cells can provide help for generation of Ab to P. chabaudi infection and can control this otherwise lethal infection in CD40L-deficient mice. PbT-II cells can also provide help for development of CD8+ T cell-mediated experimental cerebral malaria (ECM) during PbA infection. Using PbT-II CD4+ T cells and the previously described PbT-I CD8+ T cells, we determined the dendritic cell (DC) subsets responsible for immunity to PbA blood-stage infection. CD8+ DC (a subset of XCR1+ DC) were the major APC responsible for activation of both T cell subsets, although other DC also contributed to CD4+ T cell responses. Depletion of CD8+ DC at the beginning of infection prevented ECM development and impaired both Th1 and follicular Th cell responses; in contrast, late depletion did not affect ECM. This study describes a novel and versatile tool for examining CD4+ T cell immunity during malaria and provides evidence that CD4+ T cell help, acting via CD40L signaling, can promote immunity or pathology to blood-stage malaria largely through Ag presentation by CD8+ DC.

History

Journal

Journal of immunology

Volume

199

Issue

12

Pagination

4165 - 4179

Publisher

American Association of Immunologists

Location

Bethesda, Md.

ISSN

0022-1767

eISSN

1550-6606

Language

eng

Publication classification

C Journal article; C1 Refereed article in a scholarly journal

Copyright notice

2017, The American Association of Immunologists, Inc.