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Updated: Apr 29, 2026

Titration ELISA as a Method to Determine the Dissociation Constant of Receptor Ligand Interaction
Published on: February 15, 2018
Structural basis for the differential recognition of integrin αvβ3 by rhodostomin and trimucrin
Ya-Ting Wang1, Yao-Tsung Chang2, Chun-Hao Huang2
1Institute of Basic Medical Sciences, National Cheng Kung University College of Medicine, Tainan, Taiwan, ROC.
Abstract:
Rhodostomin (Rho) and Trimucrin (Tmu) are RGD-containing disintegrins that inhibit integrins more effectively than short RGD peptides. They differ in their linker, RGD loop, and C-terminal sequences. We determined the X-ray structure of Tmu and the cryo-EM structures of integrin αvβ3 in complex with both disintegrins. Structural analysis revealed subtle differences in binding, with both adopting a rigid backbone conformation and interacting with integrin through three cooperative binding sites. Besides the conserved RGD interface, Tmu features a cluster of basic residues in its linker, while Rho has distinct C-terminal interactions. Disintegrin binding stabilizes αvβ3 in an extended-open conformation, while the β3-Y110 residue is essential for maintaining the bent state without ligands. These findings enhance our understanding of integrin recognition and inform the development of integrin-targeted therapeutics for anti-angiogenic, anti-tumor, and anti-inflammatory applications.
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