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Cysteinyl cathepsins: multifunctional enzymes in cardiovascular disease
Xiang Li1, Zexuan Liu, Zeen Cheng
1Department of Cardiology, Yanbian University Hospital, Yanji, Jilin Prov, China.
Insights
Cysteine protease cathepsins play key roles beyond intracellular degradation, impacting cardiovascular disease progression through extracellular matrix remodeling and cell signaling. Targeting cathepsins offers potential for novel diagnostics and therapeutics in heart disease.
Area of Science:
- Biochemistry
- Molecular Biology
- Cardiovascular Research
Background:
- Lysosomal cysteine proteases (cathepsins) traditionally known for intracellular protein degradation.
- Emerging evidence highlights extracellular roles of cathepsins in cardiovascular disease (CVD) pathogenesis.
- Mechanisms involve extracellular matrix remodeling, cell signaling, and apoptosis in heart disease.
Purpose of the Study:
- To review cathepsin biology, including structure, synthesis, activation, secretion, regulation, and function.
- To elucidate the involvement of cysteinyl cathepsins in heart and vessel diseases.
- To explore cathepsins as diagnostic/prognostic markers and therapeutic targets in CVD.
Main Methods:
- Review of existing literature on cathepsin function in cardiovascular contexts.
- Analysis of data from animal studies on cathepsin involvement in heart disease.
- Examination of regulatory mechanisms involving inflammatory cytokines and hormones.
Main Results:
- Cathepsins contribute to extracellular matrix protein remodeling and interstitial matrix degradation in CVD.
- Inflammatory cytokines and hormones modulate cathepsin expression and secretion.
- Serum levels of cathepsins L, S, K, and cystatin C show potential as predictive biomarkers for coronary and cardiac disease.
Conclusions:
- Cysteinyl cathepsins are implicated in the pathogenesis of cardiovascular diseases.
- Cathepsins represent promising diagnostic and prognostic biomarkers for CVD.
- Pharmacological targeting of cathepsins, alongside existing cardiovascular drugs, offers a potential therapeutic strategy for CVD.
Abstract:
Until recently, the role of lysosomal cysteine protease cathepsins in intracellular protein degradation was believed to be mainly restricted to scavenging. However, recent studies have revealed nontraditional roles for cysteine protease cathepsins in the extracellular space during the development and progression of cardiovascular disease. Although the precise mechanisms are unknown, data from animal studies suggest that members of the cathepsin family, like other extracellular proteases, contribute to extracellular matrix protein remodeling and interstitial matrix degradation, as well as to cell signaling and cell apoptosis in heart disease. Inflammatory cytokines and hormones regulate the expression and secretion of cathepsins in cultured cardiovascular cells and macrophages. Serum levels of cathepsins L, S, and K and their endogenous inhibitor cystatin C may be useful predictive biomarkers in patients with coronary artery disease and cardiac disease. Furthermore, in vivo pharmacological intervention with a synthetic cathepsin inhibitor and cardiovascular drugs (including statins and angiotensin II type 1 receptor antagonists) has the potential for pharmacologic targeting of cathepsins in cardiovascular disease. This review focuses on cathepsin biology (structure, synthesis, processing, activation, secretion, activity regulation, and function) and the involvement of cysteinyl cathepsins in the pathogenesis of several heart and vessel diseases, especially with respect to their potential application as diagnostic and prognostic markers and drug targets to prevent inappropriate proteolysis in cardiovascular disease.
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