Locking in alternate conformations of the integrin αLβ2 I domain with disulfide bonds reveals functional relationships among integrin domains
Open Access
- 27 February 2001
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 98 (5) , 2393-2398
- https://doi.org/10.1073/pnas.041618598
Abstract
We used integrin αLβ2 heterodimers containing I domains locked open (active) or closed (inactive) with disulfide bonds to investigate regulatory interactions among domains in integrins. mAbs to the αL I domain and β2 I-like domain inhibit adhesion of wild-type αLβ2 to intercellular adhesion molecule-1. However, with αLβ2 containing a locked open I domain, mAbs to the I domain were subdivided into subsets (i) that did not inhibit, and thus appear to inhibit by favoring the closed conformation, and (ii) that did inhibit, and thus appear to bind to the ligand binding site. Furthermore, αLβ2 containing a locked open I domain was completely resistant to inhibition by mAbs to the β2 I-like domain, but became fully susceptible to inhibition after disulfide reduction with DTT. This finding suggests that the I-like domain indirectly contributes to ligand binding by regulating opening of the I domain in wild-type αLβ2. Conversely, locking the I domain closed partially restrained conformational change of the I-like domain by Mn2+, as measured with mAb m24, which we map here to the β2 I-like domain. By contrast, locking the I domain closed or open did not affect constitutive or Mn2+-induced exposure of the KIM127 epitope in the β2 stalk region. Furthermore, locked open I domains, in αLβ2 complexes or expressed in isolation on the cell surface, bound to intercellular adhesion molecule-1 equivalently in Mg2+ and Mn2+. These results suggest that Mn2+ activates αLβ2 by binding to a site other than the I domain, most likely the I-like domain of β2.Keywords
This publication has 37 references indexed in Scilit:
- An Isoleucine-based Allosteric Switch Controls Affinity and Shape Shifting in Integrin CD11b A-domainJournal of Biological Chemistry, 2000
- Folding and Function of I Domain-deleted Mac-1 and Lymphocyte Function-associated Antigen-1Journal of Biological Chemistry, 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
- Structural and Functional Studies with Antibodies to the Integrin β2 SubunitPublished by Elsevier ,2000
- Multiple Discontinuous Ligand-mimetic Antibody Binding Sites Define a Ligand Binding Pocket in Integrin αIIbβ3Journal of Biological Chemistry, 2000
- Identifying the Putative Metal Ion-dependent Adhesion Site in the β2 (CD18) Subunit Required for αLβ2 and αMβ2 Ligand InteractionsJournal of Biological Chemistry, 1996
- Two conformations of the integrin A-domain (I-domain): a pathway for activation?Structure, 1995
- Crystal structure of the A domain from the a subunit of integrin CR3 (CD11 b/CD18)Cell, 1995
- KIM127, an Antibody that Promotes Adhesion, Maps to a Region of CD18 that Includes Cysteine-Rich RepeatsCell Adhesion and Communication, 1995
- Structure and Function of Leukocyte IntegrinsImmunological Reviews, 1990