bioRxiv · 10.1101/509299
Structure-guided design of a pure orthosteric antagonist of integrin αIIbβ3 that inhibits thrombosis but not clot retraction
Abstract
Platelet integrin lIb{beta}3 plays a critical role in both hemostasis and thrombosis. Current IIb{beta}3 antagonists are potent anti-thrombotic drugs, but also cause adverse outcomes, which limited their clinical use. Drug-induced serious bleeding, thrombocytopenia and paradoxical thrombosis have been linked to impaired clot retraction and to conformational changes in IIb{beta}3 that promote binding of preformed antibodies, natural ligands or both to IIb{beta}3. We have used structure-guided design to generate the orthosteric inhibitor Hr10 that acts as a pure IIb{beta}3 antagonist, i.e. it does not induce the conformational changes in IIb{beta}3. Hr10 is as effective as the partial agonist drug eptifibatide in blocking platelet aggregation and arteriolar thrombosis in mice. In contrast to eptifibatide, however, Hr10 preserved thrombin-induced clot retraction, suggesting that it may not perturb hemostasis. Our structure-based approach can find general utility in designing pure orthosteric inhibitors for other integrins, in providing vital tools for dissecting structure-activity relationships in IIb{beta}3, and potentially in offering safer alternatives for human therapy.
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Adair, B. D., Alonso, J. L., van Agthoven, J., Hayes, V., Ahn, H. S., Xiong, J.-P., Poncz, M., Arnaout, M. A.. 2018-12-31. Structure-guided design of a pure orthosteric antagonist of integrin αIIbβ3 that inhibits thrombosis but not clot retraction. https://doi.org/10.1101/509299
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