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ADAM8/MS2/CD156, an emerging drug target in the treatment of inflammatory and invasive pathologies
Garrit Koller1, Uwe Schlomann, Panagiota Golfi
1King's College London, Department of Biochemistry, London, United Kingdom.
Abstract:
While it is highly accepted that ADAM family members with ubiquitous expression patterns, such as ADAM10 and ADAM17 have major roles in homoeostasis and pathology, ADAM8 was initially considered as an immune-specific ADAM with a cell-specific expression pattern. Therefore, ADAM8 had a "sleeping beauty" existence for many years, and has recently come back into focus as it was detected under several pathological conditions. These were found to typically involve inflammation and remodelling of the extracellular matrix, including cancers and serious respiratory diseases such as asthma. In these diseases, induced expression of ADAM8 by different stimuli results in cleavage of various substrates, including cell adhesion molecules, cytokine receptors, and ECM components. Involvement of ADAM8 in individual diseases indicates its usefulness as both a diagnostic and prognostic marker. Even more strikingly, as ADAM8 progressively emerges as a key effector in pathological processes, so does its attractiveness as a therapeutic target rather than being a mere indicator of disease and its progression. This is encouraged by analysis of ADAM8 null mice, identifying no adverse phenotype in the absence of functional ADAM8. Thus, ADAM8 potentially is an attractive drug target in a variety of diseases. In this review, the current knowledge on ADAM8 in diseases and avenues for specific inhibition based on unique biochemical features of ADAM8 will be presented.
Insights
ADAM8, once overlooked, is now recognized for its role in diseases like cancer and asthma. Its inhibition is a promising therapeutic target, especially since ADAM8-deficient mice show no adverse effects.
Area of Science:
- Biochemistry
- Immunology
- Pathology
Background:
- ADAM8, unlike ubiquitous ADAM10 and ADAM17, was initially viewed as immune-specific.
- Recent findings highlight ADAM8's involvement in pathological conditions, particularly those involving inflammation and extracellular matrix remodeling.
Purpose of the Study:
- To review current knowledge on ADAM8's role in various diseases.
- To explore therapeutic strategies targeting ADAM8 based on its unique biochemical properties.
Main Methods:
- Literature review of studies on ADAM8 expression and function in disease.
- Analysis of ADAM8 null mouse models to assess phenotypic consequences.
- Examination of ADAM8's substrate cleavage in pathological contexts.
Main Results:
- ADAM8 expression is induced by stimuli in diseases like cancer and asthma.
- ADAM8 cleaves substrates including cell adhesion molecules, cytokine receptors, and ECM components.
- ADAM8-deficient mice exhibit no adverse phenotypes, suggesting therapeutic potential.
Conclusions:
- ADAM8 is a significant effector in pathological processes, implicated in inflammation and matrix remodeling.
- ADAM8 serves as a potential diagnostic and prognostic marker.
- ADAM8 represents an attractive therapeutic target for various diseases due to its pathological role and lack of adverse effects in its absence.
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