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Reduced CCL/Be-specific CD4+ T cells in CCL3-deficient or peptide-MHCII CAR-T cell–treated mice
Michael T. Falta, Masoom Raza, Caley J. Nevienski, Tonya M. Brunetti, Rui Fu, Rebecca M. Tucker, Joseph M. Gaballa, Faiz Minhajuddin, Kibrom M. Alula, Alberto Dinarello, Douglas G. Mack, Allison K. Martin, Joseph C. Onyiah, Michael Yarnell, Prashanth Francis, Terry J. Fry, Lisa A. Maier, Andrew P. Fontenot, Charles A. Dinarello, Shaikh M. Atif
Michael T. Falta, Masoom Raza, Caley J. Nevienski, Tonya M. Brunetti, Rui Fu, Rebecca M. Tucker, Joseph M. Gaballa, Faiz Minhajuddin, Kibrom M. Alula, Alberto Dinarello, Douglas G. Mack, Allison K. Martin, Joseph C. Onyiah, Michael Yarnell, Prashanth Francis, Terry J. Fry, Lisa A. Maier, Andrew P. Fontenot, Charles A. Dinarello, Shaikh M. Atif
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Research Article Immunology

Reduced CCL/Be-specific CD4+ T cells in CCL3-deficient or peptide-MHCII CAR-T cell–treated mice

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Abstract

In chronic beryllium disease (CBD), elevated levels of the inflammatory chemokines CCL3 and CCL4 in the lungs coincide with expanded populations of CD4+ T cells specific to beryllium-modified (Be-modified) peptides derived from these chemokines. Here, we generated HLA-DP2 transgenic (Tg) CCL3-deficient mice (CCL3–/–) that also lack CCL4 to investigate their role in disease development. Be-exposed CCL3–/– mice maintained normal numbers of lung macrophages and dendritic cells (DCs) but exhibited significantly reduced total and HLA-DP2–CCL/Be tetramer-specific CD4+ T cells, IFN-γ–producing CD4+ T cells, and peribronchovascular aggregates, consistent with attenuated inflammation. CCL3 was predominantly expressed in macrophages and DCs, and bone marrow chimera studies confirm that hematopoietic-derived DCs are the key regulators of CCL/Be-specific CD4+ T cell responses. RNA-seq of lung-resident CCL4/Be tetramer+ CD4+ T cells revealed a transcriptional profile enriched for inflammatory and cholesterol-metabolism pathways, with elevated expression of Ifng, Tnf, and Il17a. Moreover, Be-exposed HLA-DP2 Tg mice lacking TNF-α or treated with peptide-MHCII CAR-T cells targeting CCL4/Be-specific CD4+ T cells showed reduced T cell responses and cellular aggregates. These findings demonstrate that CCL3 and CCL4 promote CCL/Be-specific CD4+ T cell responses and highlight peptide-MHCII CAR-T cells as a potentially novel strategy for depleting self-peptide/Be-specific CD4+ T cells in CBD.

Authors

Michael T. Falta, Masoom Raza, Caley J. Nevienski, Tonya M. Brunetti, Rui Fu, Rebecca M. Tucker, Joseph M. Gaballa, Faiz Minhajuddin, Kibrom M. Alula, Alberto Dinarello, Douglas G. Mack, Allison K. Martin, Joseph C. Onyiah, Michael Yarnell, Prashanth Francis, Terry J. Fry, Lisa A. Maier, Andrew P. Fontenot, Charles A. Dinarello, Shaikh M. Atif

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Figure 5

Hematopoietic cells control the CCL/Be-specific CD4+ T cell response in the lungs of BeO-exposed mice.

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Hematopoietic cells control the CCL/Be-specific CD4+ T cell response in ...
(A) Diagram shows the generation of bone marrow chimera mice. Lethally irradiated HLA-DP2 Tg WT or CCL3–/– mice were reconstituted with bone marrow cells from congenic (CD45.1) HLA-DP2 Tg mice. (B–E) Representative flow cytometric plots show the frequency of CCL4/Be-specific (B), CD44+CD69+ tissue-resident (TR) (C), CD25+FoxP3+ Treg (D), and CD103+CD69+ tissue-resident memory (TRM) (E) CD4+ T cells in the lungs of PBS- and BeO-exposed mice. The recipient mouse strain and treatment received for each column of plots are indicated at the top of B. (F–I) Summary plots of the cell parameters indicated in B–E. (J and K) Data plots show IFN-γ (J) and IL-2 (K) ELISPOT responses as spot-forming units (SFUs) per 100,000 purified CD4+ T cells stimulated overnight with BeSO4 (100 μM). Each data point represents an individual mouse; values are shown as (mean ± SEM) combined from 2 independent experiments. One-way ANOVA determined statistical significance. *P < 0.05, **P < 0.01, ****P < 0.0001.

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