SA-4-1BBL costimulation inhibits conversion of conventional CD4+ T cells into CD4+FoxP3+ T regulatory cells by production of IFN-γ

35Citations
Citations of this article
31Readers
Mendeley users who have this article in their library.

Abstract

Tumors convert conventional CD4+ T cells into induced CD4+CD25+FoxP3+ T regulatory (iTreg) cells that serve as an effective means of immune evasion. Therefore, the blockade of conventional CD4+ T cell conversion into iTreg cells represents an attractive target for improving the efficacy of various immunotherapeutic approaches. Using a novel form of 4-1BBL molecule, SA-4-1BBL, we previously demonstrated that costimulation via 4-1BB receptor renders both CD4+and CD8+ T effector (Teff) cells refractory to inhibition by Treg cells and increased intratumoral Teff/Treg cell ratio that correlated with therapeutic efficacy in various preclinical tumor models. Building on these studies, we herein show for the first time, to our knowledge, that signaling through 4-1BB inhibits antigen- and TGF-β-driven conversion of naïve CD4+FoxP3- T cells into iTreg cells via stimulation of IFN-γ production by CD4+FoxP3- T cells. Importantly, treatment with SA-4-1BBL blocked the conversion of CD4+FoxP3- T cells into Treg cells by EG.7 tumors. Taken together with our previous studies, these results show that 4-1BB signaling negatively modulate Treg cells by two distinct mechanisms: i) inhibiting the conversion of CD4+FoxP3- T cells into iTreg cells and ii) endowing Teff cells refractory to inhibition by Treg cells. Given the dominant role of Treg cells in tumor immune evasion mechanisms, 4-1BB signaling represents an attractive target for favorably tipping the Teff:Treg balance toward Teff cells with important implications for cancer immunotherapy. © 2012 Madireddi et al.

Cite

CITATION STYLE

APA

Madireddi, S., Schabowsky, R. H., Srivastava, A. K., Sharma, R. K., Yolcu, E. S., & Shirwan, H. (2012). SA-4-1BBL costimulation inhibits conversion of conventional CD4+ T cells into CD4+FoxP3+ T regulatory cells by production of IFN-γ. PLoS ONE, 7(8). https://doi.org/10.1371/journal.pone.0042459

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free