Reversibly locking a protein fold in an active conformation with a disulfide bond: Integrin αL I domains with high affinity and antagonist activityin vivo
Open Access
- 15 May 2001
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 98 (11) , 6009-6014
- https://doi.org/10.1073/pnas.101130498
Abstract
The integrin αLβ2 has three different domains in its headpiece that have been suggested to either bind ligand or to regulate ligand binding. One of these, the inserted or I domain, has a fold similar to that of small G proteins. The I domain of the αM and α2 subunits has been crystallized in both open and closed conformations; however, the αL I domain has been crystallized in only the closed conformation. We hypothesized that the αL domain also would have an open conformation, and that this would be the ligand binding conformation. Therefore, we introduced pairs of cysteine residues to form disulfides that would lock the αL I domain in either the open or closed conformation. Locking the I domain open resulted in a 9,000-fold increase in affinity to intercellular adhesion molecule-1 (ICAM-1), which was reversed by disulfide reduction. By contrast, the affinity of the locked closed conformer was similar to wild type. Binding completely depended on Mg2+. Orders of affinity were ICAM-1 > ICAM-2 > ICAM-3. The kon, koff, and KD values for the locked open I domain were within 1.5-fold of values previously determined for the αLβ2 complex, showing that the I domain is sufficient for full affinity binding to ICAM-1. The locked open I domain antagonized αLβ2-dependent adhesion in vitro, lymphocyte homing in vivo, and firm adhesion but not rolling on high endothelial venules. The ability to reversibly lock a protein fold in an active conformation with dramatically increased affinity opens vistas in therapeutics and proteomics.Keywords
This publication has 50 references indexed in Scilit:
- Chemokines Trigger Immediate β2 Integrin Affinity and Mobility ChangesImmunity, 2000
- Integrin StructureBiochemical Society Transactions, 2000
- The Top of the Inserted-like Domain of the Integrin Lymphocyte Function-associated Antigen-1 β Subunit Contacts the α Subunit β-Propeller Domain near β-Sheet 3Journal of Biological Chemistry, 2000
- NMR solution structure of the inserted domain of human leukocyte function associated antigen-1Journal of Molecular Biology, 2000
- Molecular Mechanisms of Lymphocyte Homing to Peripheral Lymph NodesThe Journal of Experimental Medicine, 1998
- The role of the divalent cation in the structure of the I domain from the CD11a/CD18 integrinStructure, 1996
- Two conformations of the integrin A-domain (I-domain): a pathway for activation?Structure, 1995
- Traffic signals for lymphocyte recirculation and leukocyte emigration: The multistep paradigmCell, 1994
- Comparative Protein Modelling by Satisfaction of Spatial RestraintsJournal of Molecular Biology, 1993
- Intercellular adhesion molecule 3, a third adhesion counter-receptor for lymphocyte function-associated molecule 1 on resting lymphocytes.The Journal of Experimental Medicine, 1992