Structural truncation of IL-1R2 enhances the anti-inflammatory activity of HeLa cells.
Interleukin-1 receptor type 2 (IL-1R2) functions as a decoy receptor that suppresses IL-1-induced inflammatory signaling. Both membrane-bound IL-1R2 (WT IL-1R2) and its soluble form (sIL-1R2) bind interleukin-1α (IL-1α) at the cell surface or in the extracellular space, thereby inhibiting downstream signaling. However, the anti-inflammatory role of IL-1R2 varies depending on the cellular context and receptor structure. In this study, we generated two IL-1R2 deletion mutants-ΔTM, lacking the transmembrane domain, and ΔTMCP, lacking both the transmembrane and cytoplasmic domains-and compared their functions with those of WT IL-1R2 in HeLa cells. Western blotting, immunoprecipitation, and enzyme-linked immunosorbent assay were used to assess receptor expression, IL-1α binding, and IL-1β-induced interleukin-8 (IL-8) production, respectively. Both ΔTM and ΔTMCP were secreted more efficiently than WT IL-1R2. WT IL-1R2 exhibited weak intracellular interaction with IL-1α, whereas the deletion mutants showed minimal binding. WT IL-1R2 most effectively suppressed IL-1α extracellular release; however, ΔTM and ΔTMCP also reduced secretion. Notably, both deletion mutants suppressed IL-1β-induced IL-8 production more effectively than WT IL-1R2, indicating enhanced extracellular decoy activity. These findings demonstrate that structural modifications of IL-1R2 influence its function as a decoy receptor, and the enhanced inhibitory effects of the deletion mutants on IL-1 signaling provide new insight into the anti-inflammatory potential of soluble IL-1R2 in non-immune cells.Key words: Interleukin-1, Interleukin-1 receptor type 2, decoy receptor, transmembrane, soluble interleukin-1 receptor type 2.
- Research Article
2
- 10.1158/1538-7445.am2015-1361
- Aug 1, 2015
- Cancer Research
We previously demonstrated that interleukin-1 receptor type 2 (IL1R2), an IL-1 decoy receptor that inhibits exogenous IL-1 signaling, intracellularly activates the expression of several pro-inflammatory cytokines. In this study, we observed that IL1R2 was overexpressed in human colon cancer cells (CRC) compared to normal colon cells. In addition, we observed that the IL1R2 level was higher in late-stage clinical CRC patients and that a high level of IL1R2 was associated with a poor 5-year survival rate in CRC patients. Furthermore, we observed that the levels of IL1R2 and IL-6 were strongly correlated in 40 CRC patients. To elucidate the oncogenic roles of intracellular IL1R2, we modulated its expression levels in human CRC cell lines. We verified that the intracellular level of IL1R2 was correlated with the migration ability of CRC, cells. We observed that the VEGF-A and IL-6 levels were significantly increased in conditioned media harvested from IL1R2-overexpressing cells, and these elevated VEGF-A and IL-6 levels enhanced the proliferation, migration, and tube formation of cultured endothelial cells. We further demonstrated that intracellular IL1R2 levels were positively associated with tumor growth and microvessel density in xenograft mouse models. Furthermore, we observed that IL1R2 formed a complex with c-Fos. This complex bound to the AP-1 site at the IL-6 and VEGF-A promoters. Together, these results reveal that intracellular IL1R2 acts with c-Fos to enhance the transcription of IL-6 and VEGF-A, which promotes tumor malignancy and angiogenesis. Citation Format: Ai-Chung Mar. The decoy receptor interleukin-1 receptor type 2 acts as an angiogenic factor in human colorectal cancer. [abstract]. In: Proceedings of the 106th Annual Meeting of the American Association for Cancer Research; 2015 Apr 18-22; Philadelphia, PA. Philadelphia (PA): AACR; Cancer Res 2015;75(15 Suppl):Abstract nr 1361. doi:10.1158/1538-7445.AM2015-1361
- Research Article
2
- 10.1016/j.exer.2023.109750
- Dec 13, 2023
- Experimental eye research
IL1R2 promotes retinal angiogenesis to participate in retinopathy of prematurity by activating the HIF1α/PFKFB3 pathway
- Research Article
90
- 10.1074/jbc.m115.644823
- Sep 1, 2015
- Journal of Biological Chemistry
Interleukin-1 receptor type 2 (IL1R2) acts as a decoy receptor of exogenous IL-1; however, its intracellular activity is poorly understood. We previously demonstrated that IL1R2 intracellularly activates the expression of several proinflammatory cytokines and affects cell migration. In this study, we found that intracellular IL1R2 expression was increased in human colorectal cancer cells (CRCs) compared with normal colon cells. We also observed that the mRNA levels of IL1R2 were highly correlated with IL-6 in tumor tissues of CRC patients. By modulating its expression in CRC cells, we verified that enhanced IL1R2 expression transcriptionally activated the expression of IL-6 and VEGF-A. Conditioned medium harvested from IL1R2-overexpressing CRC cells contained higher levels of IL-6 and VEGF-A than that from vector control cells and significantly enhanced the proliferation, migration, and tube formation of cultured endothelial cells. We further demonstrated a positive association of intracellular IL1R2 levels with tumor growth and microvessel density in xenograft mouse models. These results revealed that IL1R2 activates the expression of angiogenic factors. Mechanistically, we revealed that IL1R2 complexes with c-Fos and binds to the AP-1 site at the IL-6 and VEGF-A promoters. Together, these results reveal a novel function of intracellular IL1R2 that acts with c-Fos to enhance the transcription of IL-6 and VEGF-A, which promotes angiogenesis in CRC.
- Research Article
14
- 10.1016/j.prp.2022.154069
- Aug 10, 2022
- Pathology - Research and Practice
IL1R2 promotes tumor progression via JAK2/STAT3 pathway in human clear cell renal cell carcinoma
- Research Article
35
- 10.1038/mi.2015.108
- Nov 4, 2015
- Mucosal Immunology
Epithelial IL-1R2 acts as a homeostatic regulator during remission of ulcerative colitis
- Research Article
36
- 10.1038/s41419-022-04533-1
- Jan 1, 2022
- Cell Death & Disease
Myocardial ischemia reperfusion (I/R) injury is a complex process with intense inflammatory response and cardiomyocyte apoptosis. As a decoy receptor of IL-1β, Interleukin-1 receptor type 2 (IL-1R2) inhibits IL-1β signaling. However, its role in I/R injury remains unknown. Here we found that the serum levels of IL-1R2 were significantly increased in patients with acute myocardial infarction (AMI) following interventional therapy. Similarly, after myocardial I/R surgery, IL-1R2 expression was significantly increased in heart of wild-type mice. In addition, IL-1R2-deficient mice heart showed enlarged infarct size, increased cardiomyocyte apoptosis together with reduced cardiac systolic function. Following exposure to hypoxia and reoxygenation (H/R), neonatal rat ventricular myocytes (NRVM) significantly increased IL-1R2 expression relying on NF-κB activation. Consistently, IL-1R2-deficient mice increased immune cells infiltrating into heart after surgery, which was relevant with cardiac damage. Additionally, IL-1R2 overexpression in cardiomyocyte protected cardiomyocyte against apoptosis through reducing the IL-17RA expression both in vivo and in vitro. Our results indicate that IL-1R2 protects cardiomyocytes from apoptosis, which provides a therapeutic approach to turn down myocardial I/R injury.
- Research Article
- 10.2174/0118715303417042251002073727
- Oct 16, 2025
- Endocrine, metabolic & immune disorders drug targets
PCOS is a common endocrine disorder in women of reproductive age, with granulosa cells playing a key role in its development. This study aims to identify shared differentially expressed genes (DEG) in granulosa cells and blood from PCOS patients, offering potential biomarkers and therapeutic targets. Transcriptomic data were obtained from the Gene Expression Omnibus (GEO) database: GSE95728 (granulosa cells; 7 PCOS, 7 controls) and two blood-based datasets, GSE85932 and GSE54248 (12 PCOS, 12 controls). In silico tools were employed to identify DEG, hub genes, and protein-protein interactions and to explore predicted drug targets. DEG analysis revealed that Vanin-2 (VNN2) and Interleukin-1 receptor type 2 (IL1R2) were consistently dysregulated in PCOS patients. Dysferlin (DYSF), Carbonic Anhydrase 4 (CA4), and Solute Carrier Family 2 Member 14 (SLC2A14) were differentially expressed between the blood datasets, while Aquaporin 9 (AQP9), C-X-C Motif Chemokine Receptor 1 (CXCR1), and Annexin A3 (ANXA3) were dysregulated in GSE95728 (granulosa cells) and GSE54248 (blood). Functional enrichment highlighted immune and metabolic pathways. Protein-protein interaction analysis identified AQP9 as a hub gene. Drug prediction analysis suggested that IL1R2 could be targeted by anakinra, while VNN2 was predicted to interact with pantothenic acid. The dysregulation of VNN2 and IL1R2 across tissue types suggests their involvement in immune-inflammatory processes in PCOS. The expression of AQP9 and other metabolism-related genes indicates possible immune-metabolic crosstalk, aligning with known PCOS pathophysiology. VNN2 and IL1R2 show potential as biomarkers or therapeutic targets in PCOS. Further validation is needed to confirm their clinical significance and roles.
- Research Article
64
- 10.1002/advs.201901728
- Nov 13, 2019
- Advanced science (Weinheim, Baden-Wurttemberg, Germany)
Breast tumor initiating cells (BTICs) with ALDH+CD24−CD44+ phenotype are the most tumorigenic and invasive cell population in breast cancer. However, the molecular mechanisms are still unclear. Here, it is found that a negative immune regulator interleukin‐1 receptor type 2 (IL1R2) is upregulated in breast cancer (BC) tissues and especially in BTICs. BC patients with high IL1R2 expression have a poorer overall survival and relapse‐free survival. High IL1R2 promotes BTIC self‐renewal and BC cell proliferation and invasion. Mechanistically, IL1R2 is activated by IL1β, as demonstrated by the fact that IL1β induces the release of IL1R2 intracellular domain (icd‐IL1R2) and icd‐IL1R2 then interacts with the deubiquitinase USP15 at the UBL2 domain and promotes its activity, which finally induces BMI1 deubiquitination at lysine 81 and stabilizes BMI1 protein. In addition, IL1R2 neutralizing antibody can suppress the protein expression of both IL1R2 and BMI1, and significantly abrogates the promoting effect of IL1R2 on BTIC self‐renewal and BC cell growth both in vitro and in vivo. The current results indicate that blocking IL1R2 with neutralizing antibody provides a therapeutic approach to inhibit BC progression by targeting BTICs.
- Research Article
17
- 10.1007/s13258-020-01007-6
- Oct 14, 2020
- Genes & Genomics
Myocardial ischemia and reperfusion injury (MI/RI) is a complex pathophysiological process, which can lead to severe myocardial injury. The long noncoding RNA alpha-2-macroglobulin antisense RNA 1 (A2M-AS1) has been revealed to be abnormally expressed in MI, However, its function in MI and the potential mechanism are still unclear. To evaluate the functional role of A2M-AS1 in hypoxia/reoxygenation (H/R)-induced neonatal cardiomyocytes and its potential molecular mechanism. Dataset GSE66360 was obtained from GEO database for analyzing the RNA expression of A2M-AS1 and interleukin 1 receptor type 2 (IL1R2). KEGG pathway enrichment analysis of the genes that co-expressed with A2M-AS1 was performed. Human neonatal cardiomyocytes were subjected to H/R to construct in vitro models. QRT-PCR and Western blot were adopted to test the levels of mRNA and protein. The viability and apoptosis of cardiomyocytes were tested by CCK-8 and flow cytometry assays, respectively. The expression of A2M-AS1 was notably downregulated in H/R-treated cardiomyocytes. Overexpression of A2M-AS1 can notably enhance the cell viability of H/R-damaged cardiomyocytes, whereas knockdown of A2M-AS1 showed the opposite outcomes. Besides, a negative correlation was showed between A2M-AS1 and IL1R2 expression. In H/R-treated cardiomyocytes, overexpression of IL1R2 weakened the promoting proliferation and anti-apoptosis effects caused by overexpressing A2M-AS1, however, IL1R2-knockdown abolished the anti-proliferation and pro-apoptosis effects caused by silencing A2M-AS1. This study demonstrates the potential regulatory role of A2M-AS1/ IL1R2 axis in cardiomyocytes suffered from H/R, and provides insight into the protection of MI/RI.
- Research Article
- 10.1016/j.isci.2026.115055
- Feb 17, 2026
- iScience
SummaryBirth weight, which critically impacts fetal survival, is largely determined by placental development. This study investigated the epigenetic regulation of the interleukin-1 receptor type 2 (IL1R2) gene in regulating placental development and fetal birth weight. The results showed that placentas from piglets with higher birth weight (HBW) exhibited increased DNA methylation and decreased expression of IL1R2. Mechanistic studies showed that IL1R2 knockdown promoted the proliferation and migration of porcine trophoblast 2 (PTr2) cells, while downregulating the expression of apoptosis-related genes, including BCL2-associated X protein (BAX), caspase-3 (CASP3), and caspase-9 (CASP9). Conversely, IL1R2 overexpression significantly suppressed the proliferation and migration of PTr2 cells, reduced the expression of the proliferation marker proliferating cell nuclear antigen (PCNA), and promoted the expression of the pro-apoptotic gene BAX. Furthermore, IL1R2 knockdown decreased tumor necrosis factor-alpha (TNF-α) production, while overexpression led to opposite results. Collectively, these findings demonstrate that IL1R2 regulates the proliferation, migration, and inflammatory responses of PTr2 cells, thereby modulating the placental development and fetal birth weight.
- Research Article
5
- 10.3389/fnut.2023.1293170
- Nov 28, 2023
- Frontiers in Nutrition
PurposeObservational studies have increasingly recognized the influence of gut microbes on blood pressure modulation. Despite these findings, a direct causal link between gut flora and hypertension remains unestablished due to inherent confounders and the challenges of reverse causality in observational research. In this study, we sought to elucidate the causal relationship between specific gut flora and hypertension and its intermediary mediators.MethodsWe employed a two-sample Mendelian randomization (MR) and mediation MR analysis, analyzing 211 species of gut bacteria, with a focus on the interleukin family as potential mediators and hypertension as the primary outcome. The central methodological technique was inverse variance-weighted estimation, supplemented by various other estimators.ResultsOur findings revealed that two bacterial species positively correlated with hypertension risk, while five exhibited a negative association. Further validation was conducted using sensitivity analyses. Notably, our mediation MR results suggest interleukin-1 receptor type 2 (IL-1R2) as a mediator for the effect of the genus Clostridium innocuum group on hypertension, accounting for a mediation proportion of 14.07% [mediation effect: (b = 0.0007, 95%CI: 0.0002–0.0011); proportion mediation = 14.07% (4.26–23.40%)].ConclusionOur research confirms a genetic causal relationship between specific gut microbes and hypertension, emphasizing the potential mediating role of interleukin-1 receptor type 2 (IL-1R2) and offering insights for clinical hypertension interventions.
- Research Article
- 10.1186/s40001-026-03939-3
- Feb 1, 2026
- European journal of medical research
This study aimed to identify novel sepsis biomarkers by evaluating serum interleukin-1 receptor type 2 (IL1R2) for its diagnostic and prognostic utility, in light of the limitations of current markers like PCT and CRP. A single-center retrospective analysis was conducted involving 55 sepsis patients and 42 non-sepsis controls. Serum IL1R2 levels, measured via ELISA within 24h of admission, were compared against clinical data, including SOFA scores, 28-day mortality, and laboratory parameters (PCT, CRP). Diagnostic performance was assessed using ROC curve analysis, while prognostic utility was determined via Kaplan-Meier analysis. A cecal ligation and puncture (CLP) was used to track IL1R2 dynamics over time. Sepsis patients exhibited significantly elevated serum IL1R2 levels compared to controls. IL1R2 demonstrated strong diagnostic power (AUC = 0.908), outperforming PCT and CRP. Furthermore, higher IL1R2 levels correlated with increased SOFA scores and predicted poorer 28-day survival. In the CLP model, serum IL1R2 rose within 4h post-sepsis, peaked within 24h, returned to baseline by day 3, and fell below normal by day 7. Serum IL1R2 is a promising biomarker, offering a superior ability to correlate with disease severity and predict 28-day mortality.
- Research Article
20
- 10.1016/j.jpsychires.2021.01.018
- Jan 19, 2021
- Journal of Psychiatric Research
Interleukin-1 family and serotonin transporter in first-episode, drug-naive major depressive disorder: A pilot study
- Research Article
14
- 10.1002/mgg3.516
- Nov 20, 2018
- Molecular Genetics & Genomic Medicine
BackgroundDisordered inflammation and immune response is an acknowledged risk factor for cervical cancer development. Interleukin‐1 receptor type 2 (IL1R2) is a decoy receptor for IL‐1 cytokines and involved in host inflammatory and immune progression which could lead to the lesion and neoplasia of cervix. In this study, we aimed to evaluate the relationships between IL1R2 polymorphisms and cervical cancer risk in Uygur females from China.MethodsIn this case–control study, genotypes of six selected variants (rs11674595, rs4851527, rs719250, rs3218896, rs3218977, and rs2072472) distributed in IL1R2 were detected among 247 cervical cancer patients and 286 healthy controls with the usage of an Agena MassARRY method. Furthermore, Genetic models and haplotype analyses were conducted to estimate the associations of IL1R2 polymorphisms with cervical cancer risk.ResultsAfter statistical analyses, rs719250 (odd ratio [OR] = 1.436, 95% confidence interval [95% CI] = 1.079–1.911, p = 0.013) and rs3218896 (OR = 1.552, 95% CI = 1.080–2.229, p = 0.017) showed obvious evidence in correlation to cervical cancer susceptibility owing to the surviving significant differences between cases and controls in allele model. Genetic model analyses also revealed significant associations of rs719250 and rs3218896 with cervical cancer risk in the codominant model, the dominant model and the log‐additive model even after adjustment for age (p < 0.05). Moreover, haplotype “T/A” of rs11674595/rs4851527 (adjusted OR = 0.73, 95% CI = 0.54–0.98, p = 0.037) and “T/C” of rs719250/rs3218896 (adjusted OR = 1.61, 95% CI = 1.10–2.36, p = 0.015) exhibited protective and risky effects for Uygur individuals on cervical cancer development, respectively.ConclusionOur data first shed the new light on the associations of IL1R2 polymorphisms with cervical cancer susceptibility among Uygur females. These results are supposed to facilitate the tumorigenesis genetic research among Chinese minorities.
- Research Article
7
- 10.1016/j.psj.2022.102399
- Dec 9, 2022
- Poultry Science
Molecular and functional characterization of chicken interleukin 1 receptor 2 (chIL-1R2)