Transforming growth factor (TGF)-β inhibits T cell proliferation and differentiation. TGF-β has been shown to inhibit the expression of transcription factors such as GATA-3 and T-bet that play important roles in T cell differentiation. Here we show that TGF-β inhibits T cell differentiation at a more proximal step. An early event during T cell activation is increased intracellular calcium levels. Calcium influx in activated T cells and the subsequent activation of transcription factors such as NFATc, events essential for T cell differentiation, are modulated by the Tec kinases that are downstream of the T cell receptor and CD28. We show that in stimulated CD4+ T cells, TGF-β inhibits phosphorylation and activation of the Tec kinase Itk, increase in intracellular Ca2+ levels, NFATc translocation, and activation of the mitogen-activated protein kinase ERK that together regulate T cell differentiation. Our studies suggest that by inhibiting Itk, and consequently Ca2+ influx, TGF-β limits T cell differentiation along both the Th1 and Th2 lineages.
Transforming Growth Factor β Blocks Tec Kinase Phosphorylation, Ca2+ Influx, and NFATc Translocation Causing Inhibition of T Cell Differentiation
The online version of this article contains supplemental material.
C.-H. Chen and C. Seguin-Devaux contributed equally to this work.
Abbreviations used in this paper: EMSA, electrophoretic mobility shift assay; ERK, extracellular signal–regulated kinase; IP3, inositol 1,4,5-triphosphate; LMB, leptomycin B; MAP, mitogen-activated protein; NF, nuclear factor; PMA, phorbol myristate acetate.
Chang-Hung Chen, Carole Seguin-Devaux, Nancy A. Burke, Timothy B. Oriss, Simon C. Watkins, Neil Clipstone, Anuradha Ray; Transforming Growth Factor β Blocks Tec Kinase Phosphorylation, Ca2+ Influx, and NFATc Translocation Causing Inhibition of T Cell Differentiation . J Exp Med 16 June 2003; 197 (12): 1689–1699. doi: https://doi.org/10.1084/jem.20021170
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