4.5 Article

IRF2BP2 transcriptional repressor restrains naive CD4 T cell activation and clonal expansion induced by TCR triggering

Journal

JOURNAL OF LEUKOCYTE BIOLOGY
Volume 100, Issue 5, Pages 1081-1091

Publisher

WILEY
DOI: 10.1189/jlb.2A0815-368R

Keywords

lymphocyte proliferation; survival; CD25

Funding

  1. National Council for Scientific and Technological Development (CNPq) [307296/2011-3, 476314/2012-7]
  2. Filho de Amparo A Pesquisa do Estado do Rio de Janeiro (FAPERJ) [112.056/2012, 102.308/2013, 110.794/2013, 101.147/2013]
  3. National Science and Technology Institute (INCT)-Cancer [573806/2008-0, 170.026/2008]
  4. CNPq fellowship
  5. FAPERJ fellowship
  6. Coordination for the Improvement of Higher Education Personnel (CAPES) fellowship
  7. Brazilian Ministry of Health fellowship

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CD4 T cell activation and differentiation mechanisms constitute a complex and intricate signaling network involving several regulatory proteins. IRF2BP2 is a transcriptional repressor that is involved in gene-expression regulation in very diverse biologic contexts. Information regarding the IRF2BP2 regulatory function in CD4 T lymphocytes is very limited and suggests a role for this protein in repressing the expression of different cytokine genes. Here, we showed that Irf2bp2 gene expression was decreased in CD4 T cells upon activation. To investigate the possible regulatory roles for IRF2BP2 in CD4 T cell functions, this protein was ectopically expressed in murine primary-activated CD4 T lymphocytes through retroviral transduction. Interestingly, ectopic expression of IRF2BP2 led to a reduction in CD25 expression and STAT5 phosphorylation, along with an impaired proliferative capacity. The CD69 expression was also diminished in IRF2BP2-overexpressing cells, whereas CD44 and CD62L levels were not altered. In vivo, transferred, IRF2BP2-overexpressing, transduced cells displayed an impaired expansion capacity compared with controls. Furthermore, overexpression of IRF2BP2 in differentiated Th cells resulted in slightly reduced IL-4 and pro-TGF-beta production in Th2 and iT(regs) but had no effect on IFN-gamma or IL-17 expression in Th1 and Th17 cells, respectively. Taken together, our data suggest a role for IRF2BP2 in regulating CD4 T cell activation by repressing proliferation and the expression of CD25 and CD69 induced by TCR stimuli.

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