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B7-H4 Modulates Regulatory CD4+ T Cell Induction and Function via Ligation of a Semaphorin 3a/Plexin A4/Neuropilin-1 Complex
Author(s) -
Joseph R. Podojil,
Ming-Yi Chiang,
Igal Ifergan,
Ronald J. Copeland,
Linda N. Liu,
Sebastien M. Maloveste,
Solomon Langermann,
David Liebenson,
Roumen Balabanov,
Hongbo Chi,
Lieping Chen,
Dario A.A. Vignali,
Stephen D. Miller
Publication year - 2018
Publication title -
the journal of immunology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.737
H-Index - 372
eISSN - 1550-6606
pISSN - 0022-1767
DOI - 10.4049/jimmunol.1700811
Subject(s) - semaphorin , neuropilin 1 , plexin , neuropilin , foxp3 , microbiology and biotechnology , regulatory t cell , t cell , immune system , biology , receptor , sema3a , chemistry , immunology , cancer research , il 2 receptor , biochemistry , vascular endothelial growth factor , vegf receptors
The potent immune regulatory function of an agonistic B7-H4-Ig fusion protein (B7-H4Ig) has been demonstrated in multiple experimental autoimmune models; however, the identity of a functional B7-H4 receptor remained unknown. The biological activity of B7-H4 is associated with decreased inflammatory CD4 + T cell responses as supported by a correlation between B7-H4-expressing tumor-associated macrophages and Foxp3 + T cells within the tumor microenvironment. Recent data indicate that members of the semaphorin (Sema)/plexin/neuropilin (Nrp) family of proteins both positively and negatively modulate immune cell function. In this study, we show that B7-H4 binds the soluble Sema family member Sema3a. Additionally, B7-H4Ig-induced inhibition of inflammatory CD4 + T cell responses is lost in both Sema3a functional mutant mice and mice lacking Nrp-1 expression in Foxp3 + T cells. These findings indicate that B7-H4Ig binds to Sema3a, which acts as a functional bridge to stimulate an Nrp-1/Plexin A4 heterodimer to form a functional immunoregulatory receptor complex resulting in increased levels of phosphorylated PTEN and enhanced regulatory CD4 + T cell number and function.

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