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IL-33: a sheep in wolf's clothing?
Massimo Gadina1, Caroline A Jefferies
1Division of Infection and Immunity, Centre for Cancer Research and Cell Biology, Queen's University Belfast, UK. m.g.gadina@qub.ac.uk
Insights
Interleukin-33 (IL-33) acts as a nuclear repressor, potentially reducing inflammation. This cytokine, along with its receptor ST2, may offer novel therapeutic strategies for autoimmune and inflammatory diseases.
Area of Science:
- Immunology
- Molecular Biology
Background:
- Cytokines regulate cell communication, but some act intracrine, influencing gene transcription within the nucleus.
- Interleukin-33 (IL-33), similar to IL-1 and IL-18, exhibits dual activity, functioning both extracellularly and intracellularly.
Purpose of the Study:
- To investigate the novel intracrine and extracellular functions of Interleukin-33 (IL-33).
- To explore the potential therapeutic applications of IL-33 in inflammatory and autoimmune conditions.
Main Methods:
- Analysis of IL-33's interaction with its receptor ST2 and its role in T helper 2 (Th2) immune responses.
- Investigating ST2's inhibitory effect on Toll-like receptors (TLRs) by sequestering adaptor molecules MyD88 and Mal.
- Evaluating the nuclear repressor activity of IL-33 and its potential to counteract inflammatory signals.
Main Results:
- Soluble IL-33 binds ST2, mediating Th2 immunoregulatory activity.
- ST2 inhibits TLRs by sequestering MyD88 and Mal, suggesting a role in modulating immune responses.
- IL-33's nuclear repressor activity and expression in inflamed tissues indicate a potential anti-inflammatory role.
Conclusions:
- IL-33 demonstrates dual activity, with extracellular functions involving ST2 and intracellular functions as a nuclear repressor.
- ST2's interaction with TLRs suggests a mechanism for limiting pathogen-induced immune responses.
- IL-33 presents potential as a novel therapeutic agent for decreasing inflammation in autoimmune and inflammatory diseases.
Abstract:
Cytokines are soluble factors that regulate intercellular communication by binding to specific cell-surface receptors and activating cellular responses. A small subset of cytokines, however, has been recognized to act in an intracrine manner without being secreted. These molecules enter the nucleus and regulate gene transcription by binding nuclear coactivators or repressors. Interleukin-33 (IL-33), a cytokine with high sequence and structural similarity to IL-1 and IL-18, has now been identified as another member of this group of "double agents." The activity of IL-33, however, appears to be the opposite of other dual-activity molecules such as the proinflammatory molecules, IL-1alpha and HMBG1 (high-mobility group box 1). Soluble IL-33 binds the Toll-interleukin 1 (IL-1) receptor (TIR) domain-containing receptor ST2 and has T helper 2 (Th2) immunoregulatory activity. ST2 also inhibits the activity of Toll-like receptors (TLRs) by sequestering the TLR adaptor molecules MyD88 and Mal. The HMBG1 receptor pairs with TLRs and helps drive responses to infections, raising the possibility that ST2, acting as a coreceptor for TLRs, could modulate and perhaps limit immune responses to pathogens. The nuclear targets of IL-33 are still unknown, but the expression of IL-33 in inflamed tissues, its nuclear repressor activity, and the antagonistic properties of ST2 suggest that it could decrease inflammation, opposing the activity of factors like IL-1. If this holds true, IL-33 has potential as a novel therapeutic in autoimmune and inflammatory diseases.
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