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Metalloproteinase-mediated Shedding of Integrin β2 promotes macrophage efflux from inflammatory sites
Ivan G Gomez1, Jingjing Tang, Carole L Wilson
1Dept. of Pathology, University of Washington, Harborview Medical Center, 325 9th Ave., Box 359675, Seattle, WA 98104, USA.
Abstract:
Macrophage exiting from inflammatory sites is critical to limit the local innate immune response. With tissue insult, resident tissue macrophages rapidly efflux to lymph nodes where they modulate the adaptive immune response, and inflammatory macrophages attracted to the site of injury then exit during the resolution phase. However, the mechanisms that regulate macrophage efflux are poorly understood. This study has investigated soluble forms of integrin β2 whose levels are elevated in experimental peritonitis at times when macrophages are exiting the peritoneum, suggesting that its proteolytic shedding may be involved in macrophage efflux. Both constitutive and inducible metalloproteinase-dependent shedding of integrin β2 from mouse macrophages are demonstrated. Soluble integrin β2 is primarily released as a heterodimeric complex with αM that retains its ability to bind its ligands intracellular adhesion molecule-1, fibrin, and collagen and thus may serve as a soluble antagonist. In a model of accelerated exiting, administration of a metalloproteinase inhibitor prevents macrophage efflux by 50% and impedes loss of macrophage integrin β2 from the cell surface. Exiting of peritoneal macrophages in mice lacking integrin β2 is accelerated, and antibody disruption of integrin β2-substrate interactions can reverse 50% of the metalloprotease inhibitor blockade of macrophage exiting. Thus, our study demonstrates the ability of metalloproteinase-mediated shedding of integrin β2 to promote macrophage efflux from inflammatory sites, and the release of soluble integrin heterodimers may also limit local inflammation.
Insights
Metalloproteinase-mediated shedding of integrin beta2 promotes macrophage efflux from inflammatory sites. Soluble integrin beta2 may limit local inflammation by acting as a soluble antagonist.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Macrophage exiting inflammatory sites is crucial for resolving innate immune responses.
- Mechanisms regulating macrophage efflux from inflamed tissues remain poorly understood.
Purpose of the Study:
- To investigate the role of soluble integrin beta2 in macrophage efflux from inflammatory sites.
- To elucidate the mechanisms of integrin beta2 shedding and its functional consequences.
Main Methods:
- Investigated soluble integrin beta2 levels in experimental peritonitis.
- Demonstrated metalloproteinase-dependent shedding of integrin beta2 from mouse macrophages.
- Utilized metalloproteinase inhibitors and integrin beta2 knockout mice to study macrophage efflux.
Main Results:
- Elevated soluble integrin beta2 levels correlate with macrophage exiting during peritonitis.
- Metalloproteinase-dependent shedding releases soluble integrin beta2-alphaM heterodimers that bind ICAM-1, fibrin, and collagen.
- Metalloproteinase inhibition reduces macrophage efflux by 50%; integrin beta2 deficiency accelerates efflux.
Conclusions:
- Metalloproteinase-mediated shedding of integrin beta2 promotes macrophage efflux from inflammatory sites.
- Soluble integrin beta2 heterodimers may function as antagonists, limiting local inflammation.
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