Abstract

Interleukin 9 (IL-9)-producing helper T (Th9) cells are essential for inducing anti-tumor immunity and inflammation in allergic and autoimmune diseases. Although transcription factors that are essential for Th9 cell differentiation have been identified, other signaling pathways that are required for their generation and functions are yet to be explored. Here, we identify that Epidermal Growth Factor Receptor (EGFR) is essential for IL-9 induction in helper T (Th) cells. Moreover, amphiregulin (Areg), an EGFR ligand, is critical for the amplification of Th9 cells induced by TGF-β1 and IL-4. Furthermore, our data show that Areg-EGFR signaling induces HIF1α, which binds and transactivates IL-9 and NOS2 promoters in Th9 cells. Loss of EGFR or HIF1α abrogates Th9 cell differentiation and suppresses their anti-tumor functions. Moreover, in line with its reliance on HIF1α expression, metabolomics profiling of Th9 cells revealed that Succinate, a TCA cycle metabolite, promotes Th9 cell differentiation and Th9 cell-mediated tumor regression.

Highlights

  • Interleukin 9 (IL-9)-producing helper T (Th9) cells are essential for inducing anti-tumor immunity and inflammation in allergic and autoimmune diseases

  • Transcription factors that are downstream to TGF-β1, IL-4, and IL-2 signaling are essential for Th9 cell differentiation, as the deficiency of either of TGF-β receptor (TGF-βR), IL-4R or IL-2R impairs Th9 cell differentiation[1,2,3,17]

  • We and others have previously identified that TGF-β1 together with IL-4 differentiate naive CD4+ T cells into IL-9-producing Th9 cells[1,2]

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Summary

Introduction

Interleukin 9 (IL-9)-producing helper T (Th9) cells are essential for inducing anti-tumor immunity and inflammation in allergic and autoimmune diseases. Transcription factors that are essential for Th9 cell differentiation have been identified, other signaling pathways that are required for their generation and functions are yet to be explored. We identify that Epidermal Growth Factor Receptor (EGFR) is essential for IL-9 induction in helper T (Th) cells. Cytokines and transcription factors, which initiate the process of differentiation of Th9 cells are known, the role of metabolic reprogramming in the generation and functions of Th9 cells is still not completely understood. Transcription factors that are downstream to TGF-β1, IL-4, and IL-2 signaling are essential for Th9 cell differentiation, as the deficiency of either of TGF-β receptor (TGF-βR), IL-4R or IL-2R impairs Th9 cell differentiation[1,2,3,17]. Given the physiological importance of IL-9, in anti-tumor immunity, a detailed understanding of molecular regulation of IL-9 induction in Th cells is needed

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