bioRxiv · 10.1101/2024.01.24.577048
Regulatory T cells control type 1-driven immunopathology restraining GM-CSF-producing helper T cells
Abstract
Regulatory T (Treg) cells are critical for maintaining peripheral tolerance and preventing autoimmunity. Treg cell depletion or dysfunction rapidly results in fatal multiorgan inflammation linked to unrestrained effector T cell expansion, but the cytokine network underlying immunopathology, and its direct cellular mediators, remain elusive. Here, we combined gene targeting, fate-mapping tools, and high-dimensional cytometry to identify the T helper (TH) cell-derived cytokines and responding cells that execute inflammatory tissue damage upon global loss of peripheral tolerance in mice. We found that TH cell-derived GM-CSF, but not IL-17A, directed the ensuing immunopathology and thereby mortality through recruitment of tissue-invading phagocytes and granulocytes, and enhancement of their reactive oxygen species production and phagocytic proficiency. Our study highlights the critical role of Treg cells in controlling GM-CSF- producing TH cells and type 1-responses to restrain phagocyte-mediated tissue destruction and provides a framework for the use of anti-GM-CSF therapies in patients with chronic inflammatory disorders.
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Costa-Pereira, S., Lanzinger, M., Andreadou, M., Nunez, N., Villar-Vesga, J., Prisco, F., Hane, P., Roussel, E., Krishnarajah, S., Lindemann, R. C., Westermann, F., Oberbichler, L., Sethi, A., Fonseca, A., Pinzger, M., Tugues, S., Mundt, S., Kipar, A., Greter, M., De Feo, D., Becher, B.. 2024-01-27. Regulatory T cells control type 1-driven immunopathology restraining GM-CSF-producing helper T cells. https://doi.org/10.1101/2024.01.24.577048
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