TY - JOUR
T1 - GM-CSF– and IRF4-dependent signaling can regulate myeloid cell numbers and the macrophage phenotype during inflammation
AU - Lee, Ming Chin
AU - Lacey, Derek C.
AU - Fleetwood, Andrew J.
AU - Achuthan, Adrian
AU - Hamilton, John A.
AU - Cook, Andrew D.
N1 - Publisher Copyright:
Copyright © 2019 by The American Association of Immunologists, Inc.
PY - 2019/5
Y1 - 2019/5
N2 - Studies have demonstrated the importance of a GM-CSF→IFN regulatory factor 4 (IRF4)→CCL17 pathway, first identified in monocytes/macrophages, for arthritic pain and disease development. In this study, we further investigated the involvement of this new pathway in shaping the inflammatory response using the zymosan-induced peritonitis (ZIP) model. ZIP (8 mg of zymosan, i.p., day 0) was induced in C57BL/6 wild-type (WT), GM-CSF2/2, Irf42/2, and Ccl17E/E mice. In comparison with WT mice, GM-CSF2/2 and Irf42/2 mice had a reduced ZIP response, as judged by a reduced number of neutrophils and macrophages in the peritoneal cavity. Moreover, the phenotype of the ZIP macrophages was altered by a lack of GM-CSF or IRF4 (increased IL-10 secretion and Arg1 mRNA expression), with IRF4 levels being lower in GM-CSF2/2 ZIP macrophages than in the WT cells. In addition, GM-CSF IRF4 signaling upregulated MHC class II expression in ZIP macrophages and bone marrow–derived macrophages. Although Ccl17 mRNA expression was reduced in ZIP macrophages in the absence of either GM-CSF or IRF4, thus supporting the presence of the new pathway in inflammatory macrophages, CCL17 did not modulate the inflammatory response, both in terms of number of myeloid cells or the macrophage phenotype. Thus, during an inflammatory response, both macrophage numbers and their phenotype can depend on GM-CSF– and IRF4-dependent signaling independently of CCL17.
AB - Studies have demonstrated the importance of a GM-CSF→IFN regulatory factor 4 (IRF4)→CCL17 pathway, first identified in monocytes/macrophages, for arthritic pain and disease development. In this study, we further investigated the involvement of this new pathway in shaping the inflammatory response using the zymosan-induced peritonitis (ZIP) model. ZIP (8 mg of zymosan, i.p., day 0) was induced in C57BL/6 wild-type (WT), GM-CSF2/2, Irf42/2, and Ccl17E/E mice. In comparison with WT mice, GM-CSF2/2 and Irf42/2 mice had a reduced ZIP response, as judged by a reduced number of neutrophils and macrophages in the peritoneal cavity. Moreover, the phenotype of the ZIP macrophages was altered by a lack of GM-CSF or IRF4 (increased IL-10 secretion and Arg1 mRNA expression), with IRF4 levels being lower in GM-CSF2/2 ZIP macrophages than in the WT cells. In addition, GM-CSF IRF4 signaling upregulated MHC class II expression in ZIP macrophages and bone marrow–derived macrophages. Although Ccl17 mRNA expression was reduced in ZIP macrophages in the absence of either GM-CSF or IRF4, thus supporting the presence of the new pathway in inflammatory macrophages, CCL17 did not modulate the inflammatory response, both in terms of number of myeloid cells or the macrophage phenotype. Thus, during an inflammatory response, both macrophage numbers and their phenotype can depend on GM-CSF– and IRF4-dependent signaling independently of CCL17.
UR - https://www.scopus.com/pages/publications/85065679448
U2 - 10.4049/jimmunol.1801549
DO - 10.4049/jimmunol.1801549
M3 - Article
C2 - 30988114
AN - SCOPUS:85065679448
SN - 0022-1767
VL - 202
SP - 3033
EP - 3040
JO - Journal of Immunology
JF - Journal of Immunology
IS - 10
ER -