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Dynamics of the gp130 cytokine complex: a model for assembly on the cellular membrane
Andreas Schroers1, Oliver Hecht, Karl-Josef Kallen
1Evotec Technologies GmbH, D-40225 Düsseldorf, Germany.
Insights
Interleukin-6 (IL-6) type cytokines bind to glycoprotein gp130. This study reveals a novel IL-6 receptor activation mechanism where gp130 dimers bind IL-6/IL-6 receptor complexes sequentially, differing from current models.
Area of Science:
- Cellular biology
- Molecular signaling
- Immunology
Background:
- Interleukin-6 (IL-6)-type cytokines signal through the glycoprotein 130 (gp130) receptor subunit.
- The precise stoichiometry of cytokine-receptor complexes and their activation mechanisms remain unclear.
- Previous studies using soluble receptors in solution yielded binding affinities lower than those observed on cell surfaces.
Purpose of the Study:
- To elucidate the stoichiometry and binding dynamics of IL-6/IL-6 receptor complexes with gp130.
- To establish a cell-free system that accurately reflects cell-surface receptor binding.
- To investigate an alternative mechanism for IL-6 receptor activation.
Main Methods:
- Expression of extracellular domains of gp130 as Fc-fusion proteins to mimic membrane-bound receptors.
- Utilizing fluorescence-correlation spectroscopy to measure binding kinetics.
- Analyzing the binding of IL-6 and its soluble receptor (IL-6R) to immobilized gp130 dimers.
Main Results:
- Successfully recapitulated cell-surface binding affinities and dynamics in a cell-free system.
- Demonstrated that gp130 dimers initially bind one IL-6/IL-6R complex.
- Observed binding of a second IL-6/IL-6R complex to the gp130 dimer only at higher ligand concentrations.
Conclusions:
- The study reveals a sequential binding mechanism for IL-6/IL-6R complexes to gp130 dimers.
- This finding challenges the current understanding of IL-6 receptor activation.
- An alternative model for IL-6-type cytokine receptor activation has been proposed.
Abstract:
Cytokines of the interleukin-6 (IL-6)-type family all bind to the glycoprotein gp130 on the cell surface and require interaction with two gp130 or one gp130 and another related signal transducing receptor subunit. In addition, some cytokines of this family, such as IL-6, interleukin-11, ciliary neurotrophic factor, neuropoietin, cardiotrophin-1, and cardiotrophin-1-like-cytokine, interact with specific ligand binding receptor proteins. High- and low-affinity binding sites have been determined for these cytokines. So far, however, the stoichiometry of the signaling receptor complexes has remained unclear, because the formation of the cytokine/cytokine-receptor complexes has been analyzed with soluble receptor components in solution, which do not necessarily reflect the situation on the cellular membrane. Consequently, the binding affinities measured in solution have been orders of magnitude below the values obtained with whole cells. We have expressed two gp130 extracellular domains in the context of a Fc-fusion protein, which fixes the receptors within one dimension and thereby restricts the flexibility of the proteins in a fashion similar to that within the plasma membrane. We measured binding of IL-6 and interleukin-b receptor (IL-6R) by means of fluorescence-correlation spectroscopy. For the first time we have succeeded in recapitulating in a cell-free condition the binding affinities and dynamics of IL-6 and IL-6R to the gp130 receptor proteins, which have been determined on whole cells. Our results demonstrate that a dimer of gp130 first binds one IL-6/IL-6R complex and only at higher ligand concentrations does it bind a second IL-6/IL-6R complex. This view contrasts with the current perception of IL-6 receptor activation and reveals an alternative receptor activation mechanism.
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