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Updated: Aug 8, 2026

Activation and Measurement of NLRP3 Inflammasome Activity Using IL-1β in Human Monocyte-derived Dendritic Cells
Published on: May 22, 2014
Acute upregulation of interleukin-1 receptor by ligand
S J Grenfell1, N Smithers, R Solari
1Department of Cellular Science, Glaxo Group, Research Limited, Greenford, Middlesex.
Insights
Interleukin 1 (IL-1) binding to EL4 6.1 cells upregulates surface IL-1 receptors. This increase in IL-1 receptor expression is due to the conversion of low-affinity receptors to high-affinity states, not new synthesis.
Area of Science:
- Immunology
- Cell Biology
Background:
- Interleukin 1 (IL-1) is a key cytokine involved in immune responses.
- Cell surface receptor expression is crucial for cellular signaling and function.
Purpose of the Study:
- To investigate the effect of IL-1 on IL-1 receptor expression in the EL4 6.1 murine thymoma cell line.
- To characterize the affinity states and regulation of IL-1 receptors.
Main Methods:
- Utilized kinetic and equilibrium binding studies with radiolabeled IL-1 alpha (¹²⁵IL-1 alpha).
- Employed crosslinking studies to assess receptor characteristics.
- Investigated ligand-mediated receptor endocytosis and its dependence on IL-1 concentration.
Main Results:
- EL4 6.1 cells express IL-1 receptors with both high and low affinity.
- Receptor-mediated endocytosis of IL-1 is concentration-dependent and does not cause receptor downregulation.
- Pre-incubation with IL-1 alpha acutely upregulates ¹²⁵IL-1 alpha binding to high-affinity receptors.
- Increased binding is attributed to a conversion of low-affinity to high-affinity receptors, not de novo synthesis or intracellular pooling.
Conclusions:
- IL-1 binding induces an increase in high-affinity IL-1 receptor number on EL4 6.1 cells.
- This upregulation results from the conversion of existing low-affinity receptors to a high-affinity state.
- The findings provide insights into the dynamic regulation of IL-1 receptor expression and signaling.
Abstract:
In this study we have investigated the effect that interleukin 1 (IL-1) has on cell surface IL-1 receptor expression in the murine thymoma cell line, EL4 6.1. These cells express IL-1 receptors with both high affinity (Kd = 65 pM, 986 receptors/cell) and low affinity (Kd = 14.5 nM, 10,417 receptors/cell). The high- and low-affinity receptors are indistinguishable by crosslinking studies performed at both high and low ligand concentrations. However, the two affinity states could be functionally distinguished on the basis of their internalization of ligand. Receptor-mediated endocytosis was dependent upon the concentration of ligand bound to the cells. In the presence of low IL-1 concentrations receptor-mediated endocytosis was slow, whereas at high IL-1 concentrations, endocytosis was more rapid. Furthermore, receptor-mediated endocytosis of IL-1 did not result in downregulation of surface IL-1 receptors. Indeed, both kinetic and equilibrium binding studies revealed that pre-incubation of cells with IL-1 alpha resulted in an acute upregulation of 125IL-1 alpha binding to high affinity surface receptors in a time and energy dependent manner. Examination of the association kinetics suggested that increased binding was not attributable to positive co-operativity of the high affinity IL-1 receptor, but was due to increasing IL-1 receptor number. This observation was confirmed by equilibrium binding studies. Moreover, receptor numbers were not enhanced by de novo synthesis, nor release of receptors from an intracellular pool. The observed increases in surface ligand binding were most probably due to conversion of the surface pool of low affinity receptors into high affinity receptors.
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