β 1 integrin activation on human neutrophils promotes β 2 integrin-mediated adhesion to fibronectin
J. Merlijn van den Berg, Erik P. J. Mul, Esther C. F. Schippers, Jan J. Weening, Dirk Roos, Taco Willem Kuijpers
Abstract
J. Merlijn van den Berg, Erik P. J. Mul, Esther C. F. Schippers, Jan J. Weening, Dirk Roos, Taco Willem Kuijpers
Abstract
Although the importance of β1 integrin-mediated binding to adhesion molecules and extracellular matrix (ECM) molecules is well established for most types of leukocytes, the expression patterns and functional importance of β1 integrins on neutrophils have remained controversial. Using flow cytometry, we found that human neutrophils express the α4, α5, α9 and β1 integrin subunits. To examine whether the integrins VLA-4 (α4/β1) and VLA-5 (α5/β1) have a functional role on neutrophils, we studied adhesion to their ligand fibronectin. Treatment of neutrophils with antibody 8A2, which specifically binds and activates β1 integrins, resulted in increased binding to fibronectin. However, addition of blocking mAb revealed that 8A2-induced adhesion did not depend on β1 integrins, but on the β2 integrin CD11b/CD18. Similarly, activation of β1 integrins by 8A2 resulted in CD11b-dependent binding of neutrophils to fibrinogen. 8A2 treatment increased expression of an activation epitope of CD11b/CD18, which depended on phosphoinositide 3-OH kinase activity and an adequate concentration of intracellular free Ca2+. These data suggest that engagement of β1 integrins on neutrophils results in a cross-talk signal that leads to activation of the β2 integrin CD11b/CD18, followed by CD11b-mediated adhesion. As transmigrated neutrophils are surrounded by both β1 and β2 ligands in the ECM, this integrin cross-talk could play a role in modifying migration and cellular activation in inflamed tissues.
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Although the importance of β1 integrin-mediated binding to adhesion molecules and extracellular matrix (ECM) molecules is well established for most types of leukocytes, the expression patterns and functional importance of β1 integrins on neutrophils have remained controversial. Using flow cytometry, we found that human neutrophils express the α4, α5, α9 and β1 integrin subunits. To examine whether the integrins VLA-4 (α4/β1) and VLA-5 (α5/β1) have a functional role on neutrophils, we studied adhesion to their ligand fibronectin. Treatment of neutrophils with antibody 8A2, which specifically binds and activates β1 integrins, resulted in increased binding to fibronectin. However, addition of blocking mAb revealed that 8A2-induced adhesion did not depend on β1 integrins, but on the β2 integrin CD11b/CD18. Similarly, activation of β1 integrins by 8A2 resulted in CD11b-dependent binding of neutrophils to fibrinogen. 8A2 treatment increased expression of an activation epitope of CD11b/CD18, which depended on phosphoinositide 3-OH kinase activity and an adequate concentration of intracellular free Ca2+. These data suggest that engagement of β1 integrins on neutrophils results in a cross-talk signal that leads to activation of the β2 integrin CD11b/CD18, followed by CD11b-mediated adhesion. As transmigrated neutrophils are surrounded by both β1 and β2 ligands in the ECM, this integrin cross-talk could play a role in modifying migration and cellular activation in inflamed tissues.
Key concepts: Integrin alpha M, Integrin, CD18, Fibronectin, Cell biology, Biology, Cell adhesion molecule, Cell adhesion