Stabilized low affinity conformation of integrins for drug discovery
The methods and compositions described herein are based, in part, on the discovery that the introduction of a disulfide bond into an integrin polypeptide by the substitution of at least one cysteine residue in the polypeptide permits stabilization of the integrin in a “closed/inactive” state. This stabilizing disulfide bond permits integrins to be screened for a candidate molecule that can bind to the closed state. In particular, this approach can be used to screen for agents that bind to the closed state of an integrin polypeptide, and are useful as therapeutic treatments to prevent integrin activation.
1. An integrin polypeptide composition comprising a modified integrin polypeptide locked in a closed conformation comprising one extracellular alpha and one extracellular beta subunit wherein the alpha subunit comprises human integrin αIIb N terminal extracellular domain L959C mutant set forth in SEQ ID NO:48 or human integrin αIIb N terminal extracellular domain E960C mutant set forth in SEQ ID NO: 49, and wherein the beta subunit comprises human integrin β3 N terminal extracellular domain V664C mutant set forth in SEQ ID NO: 52 or human integrin β3 N terminal extracellular domain P688C mutant set forth in SEQ ID NO: 53.
2. The integrin polypeptide of claim 1 , wherein the human integrin is human platelet integrin.
3. An integrin polypeptide composition comprising a modified integrin polypeptide locked in a closed conformation comprising a modified αIIb comprising SEQ ID NO: 48 and a modified β3 comprising SEQ ID NO: 53.