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ADAM-family metalloproteinases in lung inflammation: potential therapeutic targets
Daniela Dreymueller1, Stefan Uhlig1, Andreas Ludwig2
1Institute of Pharmacology and Toxicology, Rheinisch-Westfälische Technische Hochschule Aachen University, Aachen, Germany.
Abstract:
Acute and chronic lung inflammation is driven and controlled by several endogenous mediators that undergo proteolytic conversion from surface-expressed proteins to soluble variants by a disintegrin and metalloproteinase (ADAM)-family members. TNF and epidermal growth factor receptor ligands are just some of the many substrates by which these proteases regulate inflammatory or regenerative processes in the lung. ADAM10 and ADAM17 are the most prominent members of this protease family. They are constitutively expressed in most lung cells and, as recent research has shown, are the pivotal shedding enzymes mediating acute lung inflammation in a cell-specific manner. ADAM17 promotes endothelial and epithelial permeability, transendothelial leukocyte migration, and inflammatory mediator production by smooth muscle and epithelial cells. ADAM10 is critical for leukocyte migration and alveolar leukocyte recruitment. ADAM10 also promotes allergic asthma by driving B cell responses. Additionally, ADAM10 acts as a receptor for Staphylococcus aureus (S. aureus) α-toxin and is crucial for bacterial virulence. ADAM8, ADAM9, ADAM15, and ADAM33 are upregulated during acute or chronic lung inflammation, and recent functional or genetic analyses have linked them to disease development. Pharmacological inhibitors that allow us to locally or systemically target and differentiate ADAM-family members in the lung suppress acute and asthmatic inflammatory responses and S. aureus virulence. These promising results encourage further research to develop therapeutic strategies based on selected ADAMs. These studies need also to address the role of the ADAMs in repair and regeneration in the lung to identify further therapeutic opportunities and possible side effects.
Insights
A disintegrin and metalloproteinase (ADAM) proteases are key regulators of lung inflammation and bacterial virulence. Targeting specific ADAMs shows promise for treating inflammatory lung diseases and Staphylococcus aureus infections.
Area of Science:
- Biochemistry
- Immunology
- Pulmonology
Background:
- A disintegrin and metalloproteinase (ADAM) proteases mediate lung inflammation by converting surface proteins to soluble mediators.
- ADAM10 and ADAM17 are pivotal in acute lung inflammation, influencing cell permeability, leukocyte migration, and mediator production.
- Other ADAM family members are upregulated in lung inflammation, suggesting broader roles in disease.
Purpose of the Study:
- To elucidate the roles of ADAM proteases in acute and chronic lung inflammation.
- To investigate the involvement of ADAM10 and ADAM17 in specific inflammatory pathways and Staphylococcus aureus virulence.
- To assess the therapeutic potential of targeting ADAM proteases in lung diseases.
Main Methods:
- Review of recent research on ADAM proteases in lung inflammation.
- Analysis of cell-specific functions of ADAM10 and ADAM17.
- Examination of the impact of pharmacological inhibitors on inflammatory responses and bacterial virulence.
Main Results:
- ADAM17 drives endothelial/epithelial permeability and leukocyte migration; ADAM10 is crucial for leukocyte recruitment and allergic asthma.
- ADAM10 facilitates Staphylococcus aureus alpha-toxin binding, enhancing bacterial virulence.
- Targeting ADAMs with inhibitors suppressed inflammation and S. aureus virulence in preclinical models.
Conclusions:
- ADAM proteases are critical regulators of lung inflammatory and infectious processes.
- Pharmacological targeting of specific ADAMs offers a promising therapeutic strategy for lung inflammation and S. aureus infections.
- Further research is needed to explore ADAMs' roles in lung repair and regeneration for comprehensive therapeutic development.
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