TY - JOUR
T1 - BATF promotes group 2 innate lymphoid cell–mediated lung tissue protection during acute respiratory virus infection
AU - Wu, Xiaopeng
AU - Kasmani, Moujtaba Y.
AU - Zheng, Shikan
AU - Khatun, Achia
AU - Chen, Yao
AU - Winkler, Wendy
AU - Zander, Ryan
AU - Burns, Robert
AU - Taparowsky, Elizabeth J.
AU - Sun, Jie
AU - Cui, Weiguo
N1 - Funding Information:
Funding: This work was supported by NIH grants AI125741 (to W.C.), AI148403 (to W.C.), AI112844 (to J.S.), AI147394 (to J.S.), AG047156 (to J.S.), DK127526 (to M.Y.K.), and AI153537 (to R.Z.); an American Cancer Society Research Scholar Grant (to W.C.); and an Advancing a Healthier Wisconsin Endowment (AHW) Grant (to W.C). R.Z. is supported by the Cancer Research Institute Irvington Fellowship. M.Y.K. is a member of the Medical Scientist Training Program at the Medical College of Wisconsin, which is partially supported by a training grant from NIGMS (T32-GM080202). This research was completed in part with computational resources and technical support provided by the Research Computing Center at MCW.
Publisher Copyright:
2022 The Authors, some rights reserved;
PY - 2022/1
Y1 - 2022/1
N2 - Activated group 2 innate lymphoid cells (ILC2s) accumulate and promote inflammatory resolution and tissue repair in host defense against acute respiratory viral infections. However, the heterogeneity of ILC2s in the lung and the mechanisms by which ILC2 cells contribute to tissue repair remain elusive. Using single-cell RNA sequencing, we identify a transcriptionally distinct ILC2 subset that showed enrichment for wound healing signature genes and the transcription factor BATF. BATF promotes the proliferation and function of ILC2s and restricts their plasticity during infection with influenza virus. In the absence of BATF, ILC2s lose their immune protective properties and acquire pathogenic ILC3-like functions, leading to persistent neutrophil infiltration, tissue damage, and respiratory failure. Mechanistically, BATF directly binds to the cis-regulatory elements of wound healing genes, maintains their chromatin accessibility, and promotes their expression. Last, BATF plays an important role in an IL-33–ST2 feed-forward loop that supports ILC2 cell identity and function. Collectively, our findings shed light on a BATF-dependent ILC2 program, thereby providing a potential therapeutic target for terminating detrimental inflammation during acute viral infection.
AB - Activated group 2 innate lymphoid cells (ILC2s) accumulate and promote inflammatory resolution and tissue repair in host defense against acute respiratory viral infections. However, the heterogeneity of ILC2s in the lung and the mechanisms by which ILC2 cells contribute to tissue repair remain elusive. Using single-cell RNA sequencing, we identify a transcriptionally distinct ILC2 subset that showed enrichment for wound healing signature genes and the transcription factor BATF. BATF promotes the proliferation and function of ILC2s and restricts their plasticity during infection with influenza virus. In the absence of BATF, ILC2s lose their immune protective properties and acquire pathogenic ILC3-like functions, leading to persistent neutrophil infiltration, tissue damage, and respiratory failure. Mechanistically, BATF directly binds to the cis-regulatory elements of wound healing genes, maintains their chromatin accessibility, and promotes their expression. Last, BATF plays an important role in an IL-33–ST2 feed-forward loop that supports ILC2 cell identity and function. Collectively, our findings shed light on a BATF-dependent ILC2 program, thereby providing a potential therapeutic target for terminating detrimental inflammation during acute viral infection.
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U2 - 10.1126/sciimmunol.abc9934
DO - 10.1126/sciimmunol.abc9934
M3 - Article
C2 - 35030033
AN - SCOPUS:85123160063
SN - 2470-9468
VL - 7
JO - Science Immunology
JF - Science Immunology
IS - 67
M1 - eabc9934
ER -