Abstract

Human CRTh2(+) Th2 cells express IL-25 receptor (IL-25R) and IL-25 has been shown to potentiate production of Th2 cytokines. However, regulation of IL-25R and whether it participates in Th2 differentiation of human cells have not been examined. We sought to characterize IL-25R expression on CD4(+) T cells and determine whether IL-25 plays a role in Th2 differentiation. Naïve human CD4(+) T cells were activated in the presence of IL-25, IL-4 (Th2 conditions) or both cytokines to assess their relative influence on Th2 differentiation. For experiments with differentiated Th2 cells, CRTh2-expressing cells were isolated from differentiating cultures. IL-25R, GATA3, CRTh2 and Th2 cytokine expression were assessed by flow cytometry, qRT-PCR and ELISA. Expression of surface IL-25R was induced early during Th2 differentiation (2 days). Addition of IL-25 to naïve CD4(+) T cells revealed that it induces expression of its own receptor, more strongly than IL-4. IL-25 also increased the proportions of IL-4-, GATA3- and CRTh2-expressing cells and expression of IL-5 and IL-13. Activation of differentiated CRTh2(+) Th2 cells through the TCR or by CRTh2 agonist increased surface expression of IL-25R, though re-expression of CRTh2 following TCR downregulation was impeded by IL-25. These data suggest that IL-25 may play various roles in Th2 mediated immunity. We establish here it regulates expression of its own receptor and can initiate Th2 differentiation, though not as strongly as IL-4.

Highlights

  • TSLP, IL-33 and IL-25, produced by airway epithelium in response to a wide variety of environmental stimuli, are considered important links between innate immune responses and development of Th2 immunity

  • We show that IL25 can act directly on na€ve CD4þ T cells to initiate Th2 differentiation by inducing their expression of IL-4, GATA3 and CRTh2

  • We found that IL-25 slows recovery of CRTh2 expression after T cell activation, indicating it may influence the resolution phase of inflammation

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Summary

Introduction

TSLP, IL-33 and IL-25, produced by airway epithelium in response to a wide variety of environmental stimuli, are considered important links between innate immune responses and development of Th2 immunity (reviewed in [1]). IL-33 and IL-25 support dendritic cells in mediating Th2 cell responses [4, 5] and have been shown to drive the group 2 innate lymphoid cells (ILC2) to produce IL-4, IL-5 and IL-13 [6,7,8]. Whether these epithelial cytokines can initiate Th2 differentiation is not clear. As such, studying how IL-25 influences human Th2 responses is an important step toward understanding the role of IL-25-inducing environmental stimuli in the development of allergic disease

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