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Updated: Dec 21, 2025

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Published on: December 9, 2021
PKC (Protein Kinase C)-δ Modulates AT (Antithrombin) Signaling in Vascular Endothelial Cells
Sumith R Panicker1, Indranil Biswas1, Hemant Giri1
1From the Cardiovascular Biology Research Program, Oklahoma Medical Research Foundation (S.R.P., I.B., H.G., X.C., A.R.R.).
Insights
Native and latent antithrombin (AT) conformers trigger distinct endothelial cell responses. AT
Area of Science:
- Endothelial cell biology
- Molecular signaling pathways
- Protein-carbohydrate interactions
Background:
- Antithrombin (AT) exists in native and latent conformers with distinct signaling effects on vascular endothelial cells.
- Syndecan-4 (Synd-4) acts as a receptor mediating AT signaling in endothelial cells.
- The mechanisms underlying AT's paradoxical signaling activities remain unclear.
Purpose of the Study:
- To elucidate the molecular mechanisms by which native and latent AT conformers induce differential signaling in endothelial cells.
- To investigate the role of protein kinase C-delta (PKC-δ) and Synd-4 in mediating AT's effects.
Main Methods:
- Flow cytometry
- Signaling assays
- Immunoblotting
- Confocal immunofluorescence microscopy
- Genetic manipulation (dominant-negative PKC-δ)
Main Results:
- Native AT binding to endothelial glycosaminoglycans recruits PKC-δ to the plasma membrane, promoting Synd-4 phosphorylation and anti-inflammatory signaling.
- Latent AT binding induces proapoptotic effects by localizing PKC-δ to the perinuclear/nuclear compartment.
- Inhibition of PKC-δ abrogated both native and latent AT-induced signaling.
Conclusions:
- Native and latent AT conformers differentially modulate the subcellular localization of PKC-δ in endothelial cells.
- Differential PKC-δ localization is key to the distinct anti-inflammatory and proapoptotic signaling outcomes induced by AT conformers.
Objective:
Native and latent conformers of AT (antithrombin) induce anti-inflammatory and proapoptotic signaling activities, respectively, in vascular endothelial cells by unknown mechanisms. Synd-4 (syndecan-4) has been identified as a receptor that is involved in transmitting signaling activities of AT in endothelial cells. Approach and Results: In this study, we used flow cytometry, signaling assays, immunoblotting and confocal immunofluorescence microscopy to investigate the mechanism of the paradoxical signaling activities of high-affinity heparin (native) and low-affinity heparin (latent) conformers of AT in endothelial cells. We discovered that native AT binds to glycosaminoglycans on vascular endothelial cells via its heparin-binding D-helix to induce anti-inflammatory signaling responses by recruiting PKC (protein kinase C)-δ to the plasma membrane and promoting phosphorylation of the Synd-4 cytoplasmic domain at Ser179. By contrast, the binding of latent AT to endothelial cells to a site(s), which is not competed by the native AT, induces a proapoptotic effect by localizing PKC-δ to the perinuclear/nuclear compartment in endothelial cells. Overexpression of a dominant-negative form of PKC-δ resulted in inhibition of anti-inflammatory and proapoptotic signaling activities of both native and latent AT.
Conclusions:
These results indicate that the native and latent conformers of AT may exert their distinct intracellular signaling effects through differentially modulating the subcellular localization of PKC-δ in endothelial cells.
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