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Published on: April 16, 2019
Leukocytes require ADAM10 but not ADAM17 for their migration and inflammatory recruitment into the alveolar space
Jessica Pruessmeyer1, Franz Martin Hess1, Henriette Alert1
1Institute of Pharmacology and Toxicology, Medical Faculty, and.
Abstract:
Inflammation is a key process in various diseases, characterized by leukocyte recruitment to the inflammatory site. This study investigates the role of a disintegrin and a metalloproteinase (ADAM) 10 and ADAM17 for leukocyte migration in vitro and in a murine model of acute pulmonary inflammation. Inhibition experiments or RNA knockdown indicated that monocytic THP-1 cells and primary human neutrophils require ADAM10 but not ADAM17 for efficient chemokine-induced cell migration. Signaling and adhesion events that are linked to cell migration such as p38 and ρ GTPase-family activation, F-actin polymerization, adhesion to fibronectin, and up-regulation of α5 integrin were also dependent on ADAM10 but not ADAM17. This was confirmed with leukocytes isolated from mice lacking either ADAM10 or ADAM17 in all hematopoietic cells (vav 1 guanine nucleotide exchange factor [Vav]-Adam10(-/-) or Vav-Adam17(-/-) mice). In lipopolysaccharide-induced acute pulmonary inflammation, alveolar recruitment of neutrophils and monocytes was transiently increased in Vav-Adam17(-/-) but steadily reduced in Vav-Adam10(-/-) mice. This deficit in alveolar leukocyte recruitment was also observed in LysM-Adam10(-/-) mice lacking ADAM10 in myeloid cells and correlated with protection against edema formation. Thus, with regard to leukocyte migration, leukocyte-expressed ADAM10 but not ADAM17 displays proinflammatory activities and may therefore serve as a target to limit inflammatory cell recruitment.
Insights
Leukocyte migration during inflammation relies on ADAM10, not ADAM17. Targeting ADAM10 in leukocytes could reduce inflammatory cell recruitment and edema formation in pulmonary inflammation.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Inflammation involves leukocyte recruitment to affected tissues.
- A disintegrin and a metalloproteinase (ADAM) enzymes play roles in cellular processes.
Purpose of the Study:
- To investigate the roles of ADAM10 and ADAM17 in leukocyte migration.
- To determine the therapeutic potential of targeting ADAM10 in inflammatory conditions.
Main Methods:
- In vitro experiments using THP-1 cells and human neutrophils.
- In vivo studies using murine models of acute pulmonary inflammation (LPS-induced).
- Genetic manipulation (RNA knockdown, knockout mice - Vav-Adam10(-/-), Vav-Adam17(-/-), LysM-Adam10(-/-)).
Main Results:
- ADAM10, but not ADAM17, is essential for chemokine-induced migration of monocytes and neutrophils.
- ADAM10 regulates signaling pathways (p38, Rho GTPase), F-actin polymerization, and integrin activation crucial for migration.
- Mice lacking ADAM10 in hematopoietic or myeloid cells showed reduced leukocyte recruitment and edema in pulmonary inflammation.
- Mice lacking ADAM17 showed transiently increased leukocyte recruitment.
Conclusions:
- Leukocyte-expressed ADAM10 exhibits pro-inflammatory activity by promoting leukocyte migration.
- ADAM10 is a potential therapeutic target for limiting inflammatory cell recruitment in diseases like acute pulmonary inflammation.
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