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A High-Throughput Luciferase Assay to Evaluate Proteolysis of the Single-Turnover Protease PCSK9
Published on: August 28, 2018
Engineered extracellular vesicles as nanosponges for lysosomal degradation of PCSK9
Chen Wang1, Xueying Zhou1, Te Bu2
1Department of Ultrasound Diagnostics, Tangdu Hospital, Fourth Military Medical University, Xi'an 710038, China.
Abstract:
Proprotein convertase subtilisin/kexin type 9 (PCSK9) plays a crucial role in the degradation of the low-density lipoprotein receptor (LDLR), and PCSK9 inhibition emerges as an attractive strategy for atherosclerosis management. In this study, extracellular vesicles (EVs) were engineered to nanosponges, which could efficiently adsorb and deliver PCSK9 into lysosomes for degradation. Briefly, nanosponges were engineered by modifying EVs with EGF-A/PTGFRN fusion protein (PCSK9 binding domain EGF-A from the mutant LDLR with higher affinity was fused to the C terminus of prostaglandin F2 receptor negative regulator). The modification endowed the EVs with hundreds of EGF-As displayed on the surface, and thus the capacity to adsorb PCSK9 efficiently. The adsorbed PCSK9 would thus be delivered into lysosomes for degradation when the nanosponges were endocytosed by liver cells, thus releasing endogenous LDLR from degradation. In the ApoE-/- mouse model, tail vein-injected nanosponges were able to degrade PCSK9, increase LDLR expression, lower the LDL-C level, and thus alleviate atherosclerosis. In summary, here we not only develop a novel strategy for PCSK9 inhibition but we also propose a universal method for adsorption and degradation of circulating proteins for disease management.
Insights
Engineered extracellular vesicles act as nanosponges to capture and degrade PCSK9, lowering LDL-C and alleviating atherosclerosis in mice.
Area of Science:
- Biotechnology
- Cardiovascular Research
- Nanomedicine
Background:
- Proprotein convertase subtilisin/kexin type 9 (PCSK9) promotes low-density lipoprotein receptor (LDLR) degradation, contributing to atherosclerosis.
- PCSK9 inhibition is a promising therapeutic strategy for managing atherosclerosis.
Purpose of the Study:
- To engineer extracellular vesicles (EVs) into nanosponges for efficient PCSK9 adsorption and lysosomal degradation.
- To evaluate the therapeutic efficacy of PCSK9-targeting nanosponges in an atherosclerosis mouse model.
Main Methods:
- EVs were modified with an EGF-A/PTGFRN fusion protein to create PCSK9-binding nanosponges.
- Nanosponges were administered intravenously to ApoE-/- mice.
- Changes in PCSK9 levels, LDLR expression, LDL-C, and atherosclerotic plaque burden were assessed.
Main Results:
- Engineered nanosponges effectively adsorbed circulating PCSK9.
- Nanosponges led to increased LDLR expression and reduced LDL-C levels in vivo.
- Treatment with nanosponges alleviated atherosclerosis in the ApoE-/- mouse model.
Conclusions:
- Engineered EVs serve as effective nanosponges for PCSK9 degradation, offering a novel therapeutic approach.
- This platform provides a versatile strategy for targeting and degrading circulating proteins for disease management.

