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Updated: Jun 12, 2025

Characterization of Glycoproteins with the Immunoglobulin Fold by X-Ray Crystallography and Biophysical Techniques
Published on: July 5, 2018
Interleukin-2 receptor α (IL-2Rα/CD25) shedding is differentially regulated by N- and O-glycosylation
Amelie Franke1, Sophia Dahl1, Monika Funck2
1Department of Pathology, Medical Faculty, Otto-von-Guericke University Magdeburg, 39120 Magdeburg, Germany.
Insights
Glycosylation of interleukin-2 receptor alpha (IL-2Rα) impacts its shedding. Distinct N- and O-glycosylation roles and glycan effects on metalloprotease shedding by ADAM10 and ADAM17 were discovered.
Area of Science:
- Immunology
- Molecular Biology
- Glycobiology
Background:
- Interleukin-2 (IL-2) is crucial for T-cell homeostasis.
- IL-2 signaling relies on IL-2 receptor (IL-2R) subunits: IL-2Rα (CD25), IL-2Rβ, and IL-2Rγ.
- Soluble IL-2Rα (sIL-2Rα) modulates IL-2 function and is elevated in disease.
Purpose of the Study:
- To investigate the role of IL-2Rα glycosylation in its proteolytic shedding.
- To determine how N- and O-glycosylation differentially affect IL-2Rα shedding.
- To elucidate the impact of specific glycans on metalloprotease-mediated shedding.
Main Methods:
- Analysis of constitutive and induced shedding of IL-2Rα.
- Investigation of N- and O-glycosylation patterns.
- Assays using metalloproteases ADAM10 and ADAM17.
Main Results:
- Constitutive IL-2Rα shedding is significantly affected by glycosylation.
- N- and O-glycosylation play distinct roles in IL-2Rα shedding.
- Specific glycans differentially regulate shedding induced by ADAM10 and ADAM17.
- An N-glycan at an exosite is critical for ADAM17-mediated proteolysis but not ADAM10.
Conclusions:
- Glycosylation is a key regulator of IL-2Rα proteolysis and sIL-2Rα generation.
- Distinct glycan structures influence substrate recognition by ADAM10 and ADAM17.
- Understanding these mechanisms offers potential for modulating sIL-2Rα levels.
Abstract:
The cytokine interleukin-2 (IL-2) is a critical regulator of immune responses, with an especially well-characterized role in regulating T-cell homeostasis. IL-2 signaling involves three distinct receptor subunits: the IL-2Rα (CD25), IL-2Rβ, and IL-2Rγ. The intracellular transduction of IL-2-induced signals is strictly dependent on IL-2Rβ and IL-2Rγ, while the IL-2Rα is not directly involved in signaling. Instead, it has the highest affinity towards IL-2 and is thus responsible for regulating the affinity of a cell for IL-2. In addition to the membrane-bound IL-2Rα, a soluble form of the receptor (sIL-2Rα) has been described, which is present in the blood of healthy individuals, increased under various pathological conditions, and able to bind IL-2 and thus modulate its function. The sIL-2Rα is generated by proteolytic cleavage of the membrane-bound receptor. Here, we analyze whether glycosylation of the IL-2Rα regulates its proteolysis. We find that constitutive IL-2Rα shedding is affected by glycosylation and discover distinct roles for N- and O-glycosylation. Furthermore, we show that induced shedding by the metalloproteases ADAM10 and ADAM17 is also differentially regulated by distinct types of glycans. Finally, we identify a specific role for an N-glycan at an exosite in ADAM17-mediated proteolysis that does not affect ADAM10, indicating distinct substrate recognition mechanisms. These results further the understanding of the mechanisms leading to sIL-2Rα generation, and thus offer the opportunity to specifically modulate the generation of the soluble receptor.
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