Key result
Inhibition of sPLA2-V improved APC binding to endothelial cells, significantly enhancing EPCR-dependent protein C activation and APC antiapoptotic effects.
Changes in phospholipid occupancy of the endothelial protein C receptor, driven by sPLA2-V, can modulate activated protein C generation and its antiapoptotic functions.
sPLA2-V inhibition may enhance APC signaling in animal models; hypothesis-generating for human endothelial protection or thrombosis therapies.
The endothelial protein C receptor (EPCR) plays an important role in cardiovascular disease by binding protein C/activated protein C (APC). EPCR structure contains a hydrophobic groove filled with an unknown phospholipid needed to perform its function. It has not been established whether lipid exchange takes place in EPCR as a regulatory mechanism of its activity. Our objective was to identify this phospholipid and to explore the possibility of lipid exchange as a regulatory mechanism of EPCR activity driven by the endothelially expressed secretory group V phospholipase A(2) (sPLA(2)-V). We identified phosphatidylcholine (PCh) as the major phospholipid bound to human soluble EPCR (sEPCR). PCh in EPCR could be exchanged for lysophosphatidylcholine (lysoPCh) and platelet activating factor (PAF). Remarkably, lysoPCh and PAF impaired the protein C binding ability of sEPCR. Inhibition of sPLA(2)-V, responsible for lysoPCh and PAF generation, improved APC binding to endothelial cells. EPCR-dependent protein C activation and APC antiapoptotic effect were thus significantly enhanced. In contrast, endothelial cell supplementation with sPLA(2)-V inhibited both APC generation and its antiapoptotic effects. We conclude that APC generation and function can be modulated by changes in phospholipid occupancy of its endothelial cell receptor.
No takes yet. Share an insight, caveat, or question.
López‐Sagaseta et al. (2011) studied Cardiovascular disease. sPLA2-V inhibition was evaluated on APC binding to endothelial cells, protein C activation, and APC antiapoptotic effect. Inhibition of sPLA2-V improved APC binding to endothelial cells, significantly enhancing EPCR-dependent protein C activation and APC antiapoptotic effects.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: