| Literature DB >> 25772353 |
Florencia Rosetti1, Yunfeng Chen2, Mehmet Sen3, Elizabeth Thayer4, Veronica Azcutia4, Jan M Herter4, F William Luscinskas4, Xavier Cullere4, Cheng Zhu5, Tanya N Mayadas6.
Abstract
Leukocyte CD18 integrins increase their affinity for ligand by transmitting allosteric signals to and from their ligand-binding αI domain. Mechanical forces induce allosteric changes that paradoxically slow dissociation by increasing the integrin/ligand bond lifetimes, referred to as catch bonds. Mac-1 formed catch bonds with its ligands. However, a Mac-1 gene (ITGAM) coding variant (rs1143679, R77H), which is located in the β-propeller domain and is significantly associated with systemic lupus erythematosus risk, exhibits a marked impairment in 2D ligand affinity and affinity maturation under mechanical force. Targeted mutations and activating antibodies reveal that the failure in Mac-1 R77H allostery is rescued by induction of cytoplasmic tail separation and full integrin extension. These findings demonstrate roles for R77, and the β-propeller in which it resides, in force-induced allostery relay and integrin bond stabilization. Defects in these processes may have pathological consequences, as the Mac-1 R77H variant is associated with increased susceptibility to lupus.Entities:
Year: 2015 PMID: 25772353 PMCID: PMC4567551 DOI: 10.1016/j.celrep.2015.02.037
Source DB: PubMed Journal: Cell Rep Impact factor: 9.423