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Updated: Jun 25, 2026

Modeling Ligands into Maps Derived from Electron Cryomicroscopy
Published on: July 19, 2024
Structure of the ligand-binding domain of the EphB2 receptor at 2 A resolution
Yehuda Goldgur1, Sari Paavilainen, Dimitar Nikolov
1Structural Biology Program, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, New York 10065, USA.
Abstract:
Eph tyrosine kinase receptors, the largest group of receptor tyrosine kinases, and their ephrin ligands are important mediators of cell-cell communication regulating cell attachment, shape and mobility. Recently, several Eph receptors and ephrins have also been found to play important roles in the progression of cancer. Structural and biophysical studies have established detailed information on the binding and recognition of Eph receptors and ephrins. The initial high-affinity binding of Eph receptors to ephrin occurs through the penetration of an extended G-H loop of the ligand into a hydrophobic channel on the surface of the receptor. Consequently, the G-H loop-binding channel of Eph receptors is the main target in the search for Eph antagonists that could be used in the development of anticancer drugs and several peptides have been shown to specifically bind Eph receptors and compete with the cognate ephrin ligands. However, the molecular details of the conformational changes upon Eph/ephrin binding have remained speculative, since two of the loops were unstructured in the original model of the free EphB2 structure and their conformational changes upon ligand binding could consequently not be analyzed in detail. In this study, the X-ray structure of unbound EphB2 is reported at a considerably higher 2 A resolution, the conformational changes that the important receptor loops undergo upon ligand binding are described and the consequences that these findings have for the development of Eph antagonists are discussed.
Insights
Eph tyrosine kinase receptors are crucial for cell communication and cancer progression. This study reveals detailed structural changes upon Eph/ephrin binding, aiding the development of targeted cancer therapies.
Area of Science:
- Biochemistry and structural biology
- Molecular oncology
Background:
- Eph tyrosine kinase receptors and ephrin ligands mediate cell-cell communication.
- Dysregulation of Eph/ephrin signaling is implicated in cancer progression.
- Understanding Eph/ephrin binding is key for developing targeted cancer therapies.
Purpose of the Study:
- To elucidate the molecular details of conformational changes in Eph receptors upon ephrin binding.
- To provide a higher resolution structure of unbound EphB2.
- To discuss the implications for developing Eph antagonists as anticancer drugs.
Main Methods:
- X-ray crystallography
- Structural analysis of EphB2 receptor
Main Results:
- High-resolution X-ray structure of unbound EphB2 determined at 2 Å resolution.
- Detailed description of conformational changes in key receptor loops upon ligand binding.
- Identification of structural insights relevant to Eph/ephrin interaction.
Conclusions:
- The study provides critical structural insights into Eph/ephrin binding dynamics.
- These findings advance the understanding of Eph receptor function in cancer.
- The results facilitate the rational design of novel Eph antagonists for cancer treatment.
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