Related Experiment Video
Updated: Aug 8, 2026

Expansion of Human Peripheral Blood γδ T Cells using Zoledronate
Published on: September 9, 2011
One interferon gamma receptor binds one interferon gamma dimer
M Fountoulakis1, J F Juranville, A Maris
1Hoffman-La Roche Limited, Central Research Units, Basel, Switzerland.
Insights
Interferon gamma (IFN-γ) binds its receptor as a dimer, a finding supported by cross-linking and chromatography. This stoichiometry is crucial for understanding IFN-γ signaling pathways.
Area of Science:
- Immunology
- Molecular Biology
- Biochemistry
Background:
- Interferon gamma (IFN-γ) is a key cytokine in immune responses.
- The interaction between IFN-γ and its receptor is critical for cellular signaling.
- Understanding the stoichiometry of this interaction is essential for elucidating the mechanism of action.
Purpose of the Study:
- To determine the binding stoichiometry between interferon gamma and its soluble receptor.
- To investigate the oligomeric state of interferon gamma and its receptor in solution.
- To characterize the molecular complexes formed upon interaction.
Main Methods:
- Chemical cross-linking of proteins.
- Size exclusion chromatography (Sephadex G-100).
- Denaturing polyacrylamide gel electrophoresis (SDS-PAGE).
Main Results:
- Interferon gamma exists as a dimer (34 kDa) and the soluble receptor as a monomer (28 kDa).
- Complex formation yielded products of 60 kDa (dimer + monomer) and 44 kDa (monomer + monomer).
- Chromatography indicated a complex of 73 kDa, and SDS-PAGE revealed a 2:1 ratio of IFN-γ to receptor.
Conclusions:
- The interferon gamma receptor binds interferon gamma predominantly as a dimer.
- The stoichiometry suggests a 2:1 ratio of interferon gamma to its receptor in the functional complex.
- These findings clarify the molecular basis of interferon gamma receptor binding.
Abstract:
We investigated the stoichiometry of the interferon gamma and interferon gamma receptor interaction, using recombinant interferon gamma and recombinant soluble interferon gamma receptor, applying chemical cross-linking and chromatographic techniques, and analyzing the resulting products in denaturing polyacrylamide gels. Interferon gamma cross-linked to itself produced a major band of an apparent molecular mass of 34 kDa, which suggests that it exists as a dimer in physiological buffer and which agrees with published data. Soluble interferon gamma receptor cross-linked to itself produced mainly a 28-kDa band, suggesting that the interferon gamma receptor exists as a monomer. Interferon gamma cross-linked to the soluble interferon gamma receptor resulted in the formation of two main products of apparent molecular masses of 60 and 44 kDa. The predominant 60-kDa band resulted from the cross-linking of one interferon gamma dimer (34 kDa) to one interferon gamma receptor molecule (27 kDa). The 44-kDa band was formed by the cross-linking of one interferon gamma molecule to one interferon gamma receptor. Kinetic studies showed that the cross-linking of interferon gamma dimer to the soluble receptor proceeds through the intermediate formed by cross-linking one molecule of the interferon gamma dimer to the receptor. Reducing and dissociating agents inhibited complex formation. When chromatographed on Sephadex G-100, interferon gamma was eluted as a protein of 34-kDa molecular mass, the soluble interferon gamma receptor as a protein of 40 kDa, and their mixture was eluted in one peak corresponding to an apparent molecular mass of 73 kDa. Sodium dodecyl sulfate-polyacrylamide gel analysis of the eluted mixture showed the presence of both interferon gamma and interferon gamma receptor at a ratio of 2:1. The found results suggest that the interferon gamma receptor binds interferon gamma as a dimer.
More Related Videos
Related Concept Videos
TGF - β Signaling Pathway
GPCR Desensitization
Inhibitors of Viral Protein Synthesis

