TY - JOUR
T1 - CTLA-4-expressing ILC3s restrain interleukin-23-mediated inflammation
AU - JRI Live Cell Bank
AU - Ahmed, Anees
AU - Joseph, Ann M.
AU - Zhou, Jordan
AU - Horn, Veronika
AU - Uddin, Jazib
AU - Lyu, Mengze
AU - Goc, Jeremy
AU - Sockolow, Robbyn E.
AU - Wing, James B.
AU - Vivier, Eric
AU - Sakaguchi, Shimon
AU - Sonnenberg, Gregory F.
AU - Artis, David
AU - Longman, Randy
AU - Sonnenberg, Gregory F.
AU - Scherl, Ellen
AU - Sockolow, Robbyn
AU - Lukin, Dana
AU - Jacob, Vinita
AU - Sahyoun, Laura
AU - Mintz, Michael
AU - Gogokhia, Lasha
AU - Ciecierega, Thomas
AU - Solomon, Aliza
AU - Bergman, Arielle
AU - Chein, Kimberley
AU - Gordon, Elliott
AU - Ramos, Michelle
AU - de Godoy, Victoria Ribeiro
AU - Brcic-Susak, Adriana
AU - Oguntunmibi, Seun
AU - Garone, Dario
AU - Mason, Caitlin
N1 - Publisher Copyright:
© The Author(s), under exclusive licence to Springer Nature Limited 2024.
PY - 2024/6/27
Y1 - 2024/6/27
N2 - Interleukin (IL-)23 is a major mediator and therapeutic target in chronic inflammatory diseases that also elicits tissue protection in the intestine at homeostasis or following acute infection1–4. However, the mechanisms that shape these beneficial versus pathological outcomes remain poorly understood. To address this gap in knowledge, we performed single-cell RNA sequencing on all IL-23 receptor-expressing cells in the intestine and their acute response to IL-23, revealing a dominance of T cells and group 3 innate lymphoid cells (ILC3s). Unexpectedly, we identified potent upregulation of the immunoregulatory checkpoint molecule cytotoxic T-lymphocyte-associated antigen-4 (CTLA-4) on ILC3s. This pathway was activated by gut microbes and IL-23 in a FOXO1- and STAT3-dependent manner. Mice lacking CTLA-4 on ILC3s exhibited reduced regulatory T cells, elevated inflammatory T cells and more-severe intestinal inflammation. IL-23 induction of CTLA-4+ ILC3s was necessary and sufficient to reduce co-stimulatory molecules and increase PD-L1 bioavailability on intestinal myeloid cells. Finally, human ILC3s upregulated CTLA-4 in response to IL-23 or gut inflammation and correlated with immunoregulation in inflammatory bowel disease. These results reveal ILC3-intrinsic CTLA-4 as an essential checkpoint that restrains the pathological outcomes of IL-23, suggesting that disruption of these lymphocytes, which occurs in inflammatory bowel disease5–7, contributes to chronic inflammation.
AB - Interleukin (IL-)23 is a major mediator and therapeutic target in chronic inflammatory diseases that also elicits tissue protection in the intestine at homeostasis or following acute infection1–4. However, the mechanisms that shape these beneficial versus pathological outcomes remain poorly understood. To address this gap in knowledge, we performed single-cell RNA sequencing on all IL-23 receptor-expressing cells in the intestine and their acute response to IL-23, revealing a dominance of T cells and group 3 innate lymphoid cells (ILC3s). Unexpectedly, we identified potent upregulation of the immunoregulatory checkpoint molecule cytotoxic T-lymphocyte-associated antigen-4 (CTLA-4) on ILC3s. This pathway was activated by gut microbes and IL-23 in a FOXO1- and STAT3-dependent manner. Mice lacking CTLA-4 on ILC3s exhibited reduced regulatory T cells, elevated inflammatory T cells and more-severe intestinal inflammation. IL-23 induction of CTLA-4+ ILC3s was necessary and sufficient to reduce co-stimulatory molecules and increase PD-L1 bioavailability on intestinal myeloid cells. Finally, human ILC3s upregulated CTLA-4 in response to IL-23 or gut inflammation and correlated with immunoregulation in inflammatory bowel disease. These results reveal ILC3-intrinsic CTLA-4 as an essential checkpoint that restrains the pathological outcomes of IL-23, suggesting that disruption of these lymphocytes, which occurs in inflammatory bowel disease5–7, contributes to chronic inflammation.
UR - https://www.scopus.com/pages/publications/85195676726
U2 - 10.1038/s41586-024-07537-3
DO - 10.1038/s41586-024-07537-3
M3 - Article
C2 - 38867048
AN - SCOPUS:85195676726
SN - 0028-0836
VL - 630
SP - 976
EP - 983
JO - Nature
JF - Nature
IS - 8018
ER -