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A High-Throughput Luciferase Assay to Evaluate Proteolysis of the Single-Turnover Protease PCSK9
Published on: August 28, 2018
Expanding Biology of PCSK9: Roles in Atherosclerosis and Beyond
Nabil G Seidah1, Damien Garçon2
1Laboratory of Biochemical Neuroendocrinology, Montreal Clinical Research Institute (IRCM, affiliated to the University of Montreal), 110 Pine Ave West, Montreal, QC, H2W 1R7, Canada. seidahn@ircm.qc.ca.
Purpose Of Review:
Since the discovery of PCSK9 in 2003, this proprotein convertase was shown to target specific receptors for degradation in endosomes/lysosomes, including LDLR and other family members and hence to enhance the levels of circulating LDL-cholesterol (LDLc). Accordingly, inhibitors of PCSK9, including monoclonal antibodies blocking its circulating activity and siRNA silencers of its hepatic expression, are now used in clinics worldwide to treat hypercholesterolemia patients effectively and safely in combination with statins and/or ezetimibe. These powerful treatments reduce the incidence of atherosclerosis by at least 20%. Since 2008, novel targets of PCSK9 began to be defined, thereby expanding its roles beyond LDLc regulation into the realm of inflammation, pathogen infections and cellular proliferation in various cancers and associated metastases.
Recent Findings:
Some pathogens such as dengue virus exploit the ability of PCSK9 to target the LDLR for degradation to enhance their ability to infect cells. Aside from increasing the degradation of the LDLR and its family members VLDLR, ApoER2 and LRP1, circulating PCSK9 also reduces the levels of other receptors such as CD36 (implicated in fatty acid uptake), oxidized LDLR receptor (that clears oxidized LDLc) as well as major histocompatibility class-I (MHC-I) receptors (implicated in the immune response to antigens). Thus, these novel targets provided links between PCSK9 and inflammation/atherosclerosis, viral infections and cancer/metastasis. The functional activities of PCSK9, accelerated the development of novel therapies to inhibit PCSK9 functions, including small molecular inhibitors, long-term vaccines, and possibly CRISPR-based silencing of hepatic expression of PCSK9. The future of inhibitors/silencers of PCSK9 function or expression looks bright, as these are expected to provide a modern armamentarium to treat various pathologies beyond hypercholesterolemia and its effects on atherosclerosis.
Insights
Proprotein convertase subtilisin/kexin type 9 (PCSK9) regulates LDL-cholesterol and has novel roles in inflammation, infection, and cancer. PCSK9 inhibitors are effective treatments for hypercholesterolemia and may treat other diseases.
Area of Science:
- Biochemistry
- Molecular Biology
- Cardiovascular Medicine
Background:
- PCSK9 targets LDL receptor (LDLR) for degradation, increasing LDL-cholesterol (LDLc).
- PCSK9 inhibitors, including monoclonal antibodies and siRNA, are clinically used for hypercholesterolemia, reducing atherosclerosis incidence by over 20%.
- Since 2008, new PCSK9 targets have emerged, revealing roles beyond lipid regulation.
Purpose of the Study:
- To review the expanded roles of PCSK9 beyond LDLc regulation.
- To highlight novel PCSK9 targets and their implications.
- To discuss emerging PCSK9-targeted therapies.
Main Methods:
- Literature review of studies on PCSK9 discovery, function, and therapeutic inhibition.
- Analysis of research linking PCSK9 to inflammation, viral infections, and cancer.
- Evaluation of novel therapeutic strategies targeting PCSK9.
Main Results:
- PCSK9 degrades LDLR, VLDLR, ApoER2, LRP1, CD36, oxidized LDLR, and MHC-I receptors.
- PCSK9's novel targets link it to inflammation, atherosclerosis, viral infections (e.g., dengue), and cancer.
- Novel therapies include small molecule inhibitors, vaccines, and CRISPR-based gene silencing.
Conclusions:
- PCSK9 has diverse functions beyond lipid metabolism.
- PCSK9 inhibition offers a promising therapeutic strategy for hypercholesterolemia, atherosclerosis, and potentially other diseases.
- Future research and therapies targeting PCSK9 are expected to expand treatment options.
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