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IRF4 expression by lung dendritic cells drives acute but not Trm cell–dependent memory Th2 responses
Daniel F. Camacho, Tania E. Velez, Maile K. Hollinger, Esther Wang, Chanie L. Howard, Eli P. Darnell, Domenick E. Kennedy, Paulette A. Krishack, Cara L. Hrusch, Marcus R. Clark, James J. Moon, Anne I. Sperling
Daniel F. Camacho, Tania E. Velez, Maile K. Hollinger, Esther Wang, Chanie L. Howard, Eli P. Darnell, Domenick E. Kennedy, Paulette A. Krishack, Cara L. Hrusch, Marcus R. Clark, James J. Moon, Anne I. Sperling
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Research Article Immunology

IRF4 expression by lung dendritic cells drives acute but not Trm cell–dependent memory Th2 responses

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Abstract

Expression of the transcription factor interferon regulatory factor 4 (IRF4) is required for the development of lung conventional DCs type 2 (cDC2s) that elicit Th2 responses, yet how IRF4 functions in lung cDC2s throughout the acute and memory allergic response is not clear. Here, we used a mouse model that loses IRF4 expression after lung cDC2 development to demonstrate that mice with IRF4-deficient DCs display impaired memory responses to allergen. This defect in the memory response was a direct result of ineffective Th2 induction and impaired recruitment of activated effector T cells to the lung after sensitization. IRF4-deficient DCs demonstrated defects in their migration to the draining lymph node and in T cell priming. Finally, T cells primed by IRF4-competent DCs mediated potent memory responses independently of IRF4-expressing DCs, demonstrating that IRF4-expressing DCs are not necessary during the memory response. Thus, IRF4 controlled a program in mature DCs governing Th2 priming and effector responses, but IRF4-expressing DCs were dispensable during tissue-resident memory T cell–dependent memory responses.

Authors

Daniel F. Camacho, Tania E. Velez, Maile K. Hollinger, Esther Wang, Chanie L. Howard, Eli P. Darnell, Domenick E. Kennedy, Paulette A. Krishack, Cara L. Hrusch, Marcus R. Clark, James J. Moon, Anne I. Sperling

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Figure 3

Mice with IRF4-deficient DCs are unable to adequately recruit Tem cells to the lungs and produce Th2 cells or tetramer+ T cells in the lung draining lymph nodes after HDM sensitization.

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Mice with IRF4-deficient DCs are unable to adequately recruit Tem cells ...
(A) Schematic of experimental protocol for analysis of initiation of Th2 responses during sensitization phase in the lung. (B) Proportion of T effector cells of lung extravascular CD4+ T cells, and CD69 expression by extravascular lung T cells; n = 7. (C) Schematic of experimental protocol for analysis of initiation of Th2 responses during sensitization phase in the lung draining lymph nodes (LdLNs). (D) GATA3 and RORγt expression by LdLN T conventional cells on day 4 after HDM sensitization; n = 18. (E) Number of tetramer+ LdLN CD4+ T cells; n = 18. Data are representative of 2 independent experiments with n ≥ 3 mice per group; statistics (B, unpaired t test with Welch’s correction; D and E, ordinary 1-way ANOVA with Tukey’s multiple comparisons test) were performed in GraphPad Prism. Data are shown as the mean ± SEM (*P < 0.05; **P < 0.01; ****P < 0.0001).

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