TY - JOUR
T1 - The lupus susceptibility gene Pbx1 regulates the balance between follicular helper t cell and regulatory t cell differentiation
AU - Choi, Seung Chul
AU - Hutchinson, Tarun E.
AU - Titov, Anton A.
AU - Seay, Howard R.
AU - Li, Shiwu
AU - Brusko, Todd M.
AU - Croker, Byron P.
AU - Salek-Ardakani, Shahram
AU - Morel, Laurence
N1 - Funding Information:
This work was supported by National Institutes of Health Grants R01 AI045050 (to L.M.) and R01 AI087734 (to S.S.-A.).
Publisher Copyright:
Copyright © 2016 by The American Association of Immunologists, Inc.
PY - 2016/7/15
Y1 - 2016/7/15
N2 - Pbx1 controls chromatin accessibility to a large number of genes and is entirely conserved between mice and humans. The Pbx1-d dominant-negative isoform is more frequent in CD4+ T cells from lupus patients than from healthy controls. Pbx1-d is associated with the production of autoreactive T cells in mice carrying the Sle1a1 lupus-susceptibility locus. Transgenic (Tg) expression of Pbx1-d in CD4+ T cells reproduced the phenotypes of Sle1a1 mice, with increased inflammatory functions of CD4+ T cells and impaired Foxp3+ regulatory T cell (Treg) homeostasis. Pbx1-d-Tg expression also expanded the number of follicular helper T cells (TFHs) in a cell-intrinsic and Ag-specific manner, which was enhanced in recall responses and resulted in Th1-biased Abs. Moreover, Pbx1-d-Tg CD4+ T cells upregulated the expression of miR-10a, miR-21, and miR-155, which were implicated in Treg and follicular helper T cell homeostasis. Our results suggest that Pbx1-d impacts lupus development by regulating effector T cell differentiation and promoting TFHs at the expense of Tregs. In addition, our results identify Pbx1 as a novel regulator of CD4+ T cell effector function.
AB - Pbx1 controls chromatin accessibility to a large number of genes and is entirely conserved between mice and humans. The Pbx1-d dominant-negative isoform is more frequent in CD4+ T cells from lupus patients than from healthy controls. Pbx1-d is associated with the production of autoreactive T cells in mice carrying the Sle1a1 lupus-susceptibility locus. Transgenic (Tg) expression of Pbx1-d in CD4+ T cells reproduced the phenotypes of Sle1a1 mice, with increased inflammatory functions of CD4+ T cells and impaired Foxp3+ regulatory T cell (Treg) homeostasis. Pbx1-d-Tg expression also expanded the number of follicular helper T cells (TFHs) in a cell-intrinsic and Ag-specific manner, which was enhanced in recall responses and resulted in Th1-biased Abs. Moreover, Pbx1-d-Tg CD4+ T cells upregulated the expression of miR-10a, miR-21, and miR-155, which were implicated in Treg and follicular helper T cell homeostasis. Our results suggest that Pbx1-d impacts lupus development by regulating effector T cell differentiation and promoting TFHs at the expense of Tregs. In addition, our results identify Pbx1 as a novel regulator of CD4+ T cell effector function.
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U2 - 10.4049/jimmunol.1502283
DO - 10.4049/jimmunol.1502283
M3 - Article
C2 - 27296664
AN - SCOPUS:84978114974
SN - 0022-1767
VL - 197
SP - 458
EP - 469
JO - Journal of Immunology
JF - Journal of Immunology
IS - 2
ER -