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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >sPLA 2-V inhibits EPCR anticoagulant and antiapoptotic properties by accommodating lysophosphatidylcholine or PAF in the hydrophobic groove
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sPLA 2-V inhibits EPCR anticoagulant and antiapoptotic properties by accommodating lysophosphatidylcholine or PAF in the hydrophobic groove

机译:sPLA 2-V通过在疏水槽中容纳溶血磷脂酰胆碱或PAF抑制EPCR抗凝和抗凋亡特性

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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, improvedAPC 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.
机译:内皮蛋白C受体(EPCR)通过结合蛋白C /活化蛋白C(APC)在心血管疾病中发挥重要作用。 EPCR结构包含一个疏水沟,其中充满了执行其功能所需的未知磷脂。尚未确定在EPCR中是否发生脂质交换作为其活性的调节机制。我们的目标是鉴定这种磷脂,并探讨脂质交换作为内皮表达的分泌型V磷脂酶A 2(sPLA 2-V)驱动的EPCR活性调节机制的可能性。我们确定磷脂酰胆碱(PCh)是与人类可溶性EPCR(sEPCR)结合的主要磷脂。 EPCR中的PCh可交换为溶血磷脂酰胆碱(lysoPCh)和血小板活化因子(PAF)。值得注意的是,lysoPCh和PAF破坏了sEPCR的蛋白C结合能力。 sPLA 2-V的抑制,导致lysoPCh和PAF的产生,改善了APC与内皮细胞的结合。因此,EPCR依赖性蛋白C激活和APC抗凋亡作用显着增强。相比之下,补充sPLA 2-V的内皮细胞会抑制APC的产生及其抗凋亡作用。我们的结论是,APC的产生和功能可以通过其内皮细胞受体的磷脂占用变化来调节。

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