Publication: Structural basis for pure antagonism of integrin αVβ3 by a high affinity form of fibronectin
Open/View Files
Date
2014
Published Version
Journal Title
Journal ISSN
Volume Title
Publisher
The Harvard community has made this article openly available. Please share how this access benefits you.
Citation
Van Agthoven, Johannes F., Jian-Ping Xiong, José Luis Alonso, Xianliang Rui, Brian D. Adair, Simon L. Goodman, and M. Amin Arnaout. 2014. “Structural basis for pure antagonism of integrin αVβ3 by a high affinity form of fibronectin.” Nature structural & molecular biology 21 (4): 383-388. doi:10.1038/nsmb.2797. http://dx.doi.org/10.1038/nsmb.2797.
Research Data
Abstract
Integrins are important therapeutic targets. However, current RGD-based anti-integrin drugs are also partial agonists, inducing conformational changes that trigger potentially fatal immune reactions and paradoxical cell adhesion. Here we describe the first crystal structure of αVβ3 bound to a physiologic ligand: the 10th type III RGD-domain of wild-type fibronectin (wtFN10), or to a high affinity mutant (hFN10) that acts as a pure antagonist. Comparison of these structures revealed a central π - π interaction between Trp1496 in the RGD-containing loop of hFN10 and Tyr122 of the β3-subunit that blocked conformational changes triggered by wtFN10, and trapped hFN10-bound αVβ3 in an inactive conformation. Removing the Trp1496 or Tyr122 side-chains, or reorienting Trp1496 away from Tyr122, converted hFN10 into a partial agonist. The findings offer new insights on the mechanism of integrin activation and a basis for design of RGD-based pure antagonists.
Description
Other Available Sources
Keywords
Terms of Use
This article is made available under the terms and conditions applicable to Other Posted Material (LAA), as set forth at Terms of Service