[HTML][HTML] Cutting edge: Active TGF-β1 released from GARP/TGF-β1 complexes on the surface of stimulated human B lymphocytes increases class-switch recombination …

O Dedobbeleer, J Stockis… - The Journal of …, 2017 - journals.aai.org
O Dedobbeleer, J Stockis, B van der Woning, PG Coulie, S Lucas
The Journal of Immunology, 2017journals.aai.org
Production of active TGF-β is regulated at a posttranslational level and implies release of the
mature cytokine dimer from the inactive, latent TGF-β precursor. There are several cell-type
specific mechanisms of TGF-β activation. We identified a new mechanism operating on the
surface of human regulatory T cells and involving membrane protein GARP, which binds
latent TGF-β1. The paracrine activity of regulatory T cell–derived TGF-β1 contributes to
immunosuppression and can be inhibited with anti-GARP Abs. Whether other immune cell …
Abstract
Production of active TGF-β is regulated at a posttranslational level and implies release of the mature cytokine dimer from the inactive, latent TGF-β precursor. There are several cell-type specific mechanisms of TGF-β activation. We identified a new mechanism operating on the surface of human regulatory T cells and involving membrane protein GARP, which binds latent TGF-β1. The paracrine activity of regulatory T cell–derived TGF-β1 contributes to immunosuppression and can be inhibited with anti-GARP Abs. Whether other immune cell types use surface GARP to activate latent TGF-β1 was not known. We show in this study that stimulated, human B lymphocytes produce active TGF-β1 from surface GARP/latent TGF-β1 complexes with isotype switching to IgA production.
journals.aai.org