ADAMTS7: a Novel Therapeutic Target in Atherosclerosis
Allen Chung1, Muredach P Reilly1,2, Robert C Bauer3
1Cardiometabolic Genomics Program, Division of Cardiology, Department of Medicine, Columbia University, New York, NY, USA.
Purpose Of Review:
Genome-wide association studies have repeatedly linked the metalloproteinase ADAMTS7 to coronary artery disease. Here we aim to highlight recent findings surrounding the human genetics of ADAMTS7, novel mouse models that investigate ADAMTS7 function, and potential substrates of ADAMTS7 cleavage.
Recent Findings:
Recent genome-wide association studies in coronary artery disease have replicated the GWAS signal for ADAMTS7 and shown that the signal holds true even across different ethnic groups. However, the direction of effect in humans remains unclear. A recent novel mouse model revealed that the proatherogenicity of ADAMTS7 is derived from its catalytic functions, while at the translational level, vaccinating mice against ADAMTS7 reduced atherosclerosis. Finally, in vitro proteomics approaches have identified extracellular matrix proteins as candidate substrates that may be causal for the proatherogenicity of ADAMTS7. ADAMTS7 represents an enticing target for therapeutic intervention. The recent studies highlighted here have replicated prior findings, confirming the genetic link between ADAMTS7 and atherosclerosis, while providing further evidence in mice that ADAMTS7 is a targetable proatherogenic enzyme.
Insights
Genome-wide studies link ADAMTS7 to coronary artery disease. New research confirms ADAMTS7
Area of Science:
- Genetics
- Cardiovascular Research
- Biochemistry
Background:
- Genome-wide association studies (GWAS) consistently implicate ADAMTS7 in coronary artery disease (CAD).
- The precise role and direction of effect of ADAMTS7 in human CAD pathogenesis require further elucidation.
Purpose of the Study:
- To review recent advancements in understanding ADAMTS7's role in CAD.
- To explore novel mouse models for ADAMTS7 function.
- To identify potential ADAMTS7 substrates contributing to atherosclerosis.
Main Methods:
- Replication of GWAS signals across diverse ethnic groups.
- Development and analysis of novel mouse models for ADAMTS7.
- In vitro proteomics to identify ADAMTS7 substrates.
Main Results:
- ADAMTS7's proatherogenic effects are linked to its catalytic activity.
- Vaccination against ADAMTS7 reduced atherosclerosis in mice.
- Extracellular matrix proteins identified as potential ADAMTS7 substrates.
Conclusions:
- ADAMTS7 genetic association with atherosclerosis is robust across populations.
- ADAMTS7 is a targetable enzyme driving atherosclerosis.
- Further research into ADAMTS7 substrates may reveal therapeutic targets.
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