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Published on: July 9, 2014
Induction of macrophage matrix metalloproteinase biosynthesis by surfactant protein D
B C Trask1, M J Malone, E H Lum
1Department of Pediatrics, Washington University School of Medicine at St. Louis Children's and Barnes-Jewish Hospitals, St. Louis, Missouri 63110, USA.
Abstract:
Recent studies strongly suggest that surfactant protein D (SP-D) plays important roles in pulmonary host defense and the regulation of immune and inflammatory reactions in the lung. Although SP-D can bind to alveolar macrophages and can elicit their chemotaxis, relatively little is known about the direct cellular consequences of SP-D on the function of these cells. Because matrix metalloproteinases (MMPs) are synthesized in increased amounts in response to various proinflammatory stimuli, we investigated the capacity of SP-D to modulate the production of MMPs by freshly isolated human alveolar macrophages. Unexpectedly we found that recombinant rat SP-D dodecamers selectively induce the biosynthesis of collagenase-1 (MMP-1), stromelysin (MMP-3), and macrophage elastase (MMP-12) without significantly increasing the production of tumor necrosis factor alpha and interleukin-1beta. SP-D did not alter the production of these MMPs by fibroblasts. Phosphatidylinositol, a surfactant-associated ligand that interacts with the carboxyl-terminal neck and carbohydrate recognition domains of SP-D, inhibited the SP-D-dependent increase in MMP biosynthesis. A trimeric, recombinant protein consisting of only the neck and carbohydrate recognition domain did not augment metalloproteinase production, suggesting that the stimulatory effect on MMP production depends on an appropriate spatial presentation of trimeric lectin domains. Although SP-D dodecamers can selectively augment metalloproteinase activity in vitro, this effect may be competitively inhibited by tissue inhibitors of metalloproteinases or surfactant-associated ligands in vivo.
Insights
Surfactant protein D (SP-D) selectively boosts matrix metalloproteinase (MMP) production in lung macrophages. This effect, crucial for host defense, can be modulated by SP-D structure and associated ligands.
Area of Science:
- Pulmonary immunology
- Host defense mechanisms
- Molecular biology
Background:
- Surfactant protein D (SP-D) is implicated in lung immunity and inflammation.
- SP-D interacts with alveolar macrophages, but its direct cellular effects are not fully understood.
- Matrix metalloproteinases (MMPs) are key inflammatory mediators in the lung.
Purpose of the Study:
- To investigate the impact of SP-D on MMP production by human alveolar macrophages.
- To determine if SP-D modulates specific MMPs involved in lung inflammation.
- To explore the structural requirements and regulatory mechanisms of SP-D's effect on MMPs.
Main Methods:
- Incubation of human alveolar macrophages with recombinant rat SP-D dodecamers.
- Measurement of MMP-1, MMP-3, MMP-12, TNF-alpha, and IL-1beta production.
- Assessment of SP-D's effect on fibroblast MMP production.
- Investigation of phosphatidylinositol and SP-D domain structure on MMP induction.
Main Results:
- SP-D dodecamers selectively increased the biosynthesis of MMP-1, MMP-3, and MMP-12 in macrophages.
- SP-D did not significantly elevate TNF-alpha or IL-1beta levels.
- SP-D did not affect MMP production by fibroblasts.
- Phosphatidylinositol inhibited SP-D-induced MMP production, and specific SP-D domains were required for this effect.
Conclusions:
- SP-D dodecamers can selectively enhance MMP biosynthesis in alveolar macrophages, suggesting a role in pulmonary host defense.
- The spatial presentation of SP-D's lectin domains is critical for its stimulatory effect on MMP production.
- In vivo, SP-D's effect on MMPs may be regulated by interactions with tissue inhibitors or surfactant ligands.
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