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Published on: May 24, 2024
A plasma proteolysis pathway comprising blood coagulation proteases
Lu Yang1, Yun Li1,2, Arup Bhattacharya1
1Department of Chemoprevention, Roswell Park Cancer Institute, Buffalo, NY, USA.
Abstract:
Coagulation factors are essential for hemostasis. Here, we show that these factors also team up to degrade plasma proteins that are unrelated to hemostasis. Prolidase, SRC and amyloid β1-42 (Aβ1-42) are used as probes. Each probe, upon entering the blood circulation, binds and activates factor XII (FXII), triggering the intrinsic and common coagulation cascades, which in turn activate factor VII, a component of the extrinsic coagulation cascade. Activated factor VII (FVIIa) rapidly degrades the circulating probes. Therefore, FXII and FVIIa serve as the sensor/initiator and executioner, respectively, for the proteolysis pathway. Moreover, activation of this pathway by one probe leads to the degradation of all three probes. Significant activation of this pathway follows tissue injury and may also occur in other disorders, e.g., Alzheimer's disease, of which Aβ1-42 is a key driver. However, enoxaparin, a clinically used anticoagulant, inhibits the proteolysis pathway and elevates plasma levels of the probes. Enoxaparin may also mitigate potential impact of activators of the proteolysis pathway on coagulation. Our results suggest that the proteolysis pathway is important for maintaining low levels of various plasma proteins. Our finding that enoxaparin inhibits this pathway provides a means to control it. Inhibition of this pathway may facilitate the development of disease biomarkers and protein therapeutics, e.g., plasma Aβ1-42 as a biomarker of Alzheimer's disease or recombinant human prolidase as an antitumor agent.
Insights
Coagulation factors degrade unrelated plasma proteins via a novel pathway. Enoxaparin, an anticoagulant, inhibits this pathway, offering potential for disease biomarkers and therapeutics.
Area of Science:
- Biochemistry
- Hematology
- Molecular Biology
Background:
- Coagulation factors are critical for hemostasis.
- These factors have a newly identified role in degrading non-hemostatic plasma proteins.
Purpose of the Study:
- To investigate the novel proteolysis pathway mediated by coagulation factors.
- To explore the role of this pathway in protein homeostasis and disease.
- To assess the effect of enoxaparin on this pathway.
Main Methods:
- Utilized prolidase, SRC, and amyloid β1-42 (Aβ1-42) as probe substrates.
- Investigated the activation of factor XII (FXII) and factor VII (FVIIa) cascades.
- Assessed the degradation of probes and the effect of enoxaparin.
Main Results:
- Coagulation factors FXII and FVIIa initiate and execute a pathway that degrades plasma probes.
- Activation by one probe leads to the degradation of all three.
- Tissue injury and Alzheimer's disease (linked to Aβ1-42) can activate this pathway.
- Enoxaparin inhibits the pathway, increasing probe levels and potentially mitigating activator effects.
Conclusions:
- A novel proteolysis pathway involving coagulation factors maintains low plasma protein levels.
- Enoxaparin's inhibition of this pathway presents therapeutic and biomarker development opportunities.
- Potential applications include Alzheimer's disease biomarkers (Aβ1-42) and antitumor agents (recombinant prolidase).
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