血小板
血小板活化
NPC1
医学
内科学
内分泌学
化学
内体
受体
作者
Mailin-Christin Manke,Anna Roslan,Britta Walker,Patrick Münzer,Ferdinand Kollotzek,Bing Peng,Stine Mencl,Cristina Coman,Rebecca D Szepanowski,Harald Schulze,Andrew P. Lieberman,Florian Läng,Meinrad Gawaz,Christoph Kleinschnitz,Robert Łukowski,Robert Ahrends,Régis Bobe,Oliver Borst
标识
DOI:10.1016/j.jtha.2023.03.038
摘要
Pathophysiologic platelet activation leads to thrombo-occlusive diseases such as myocardial infarction or ischemic stroke. Niemann-Pick C1 protein (NPC1) is involved in the regulation of lysosomal lipid trafficking and calcium ion (Ca2+) signaling, and its genetic mutation causes a lysosomal storage disorder. Lipids and Ca2+ are key players in the complex orchestration of platelet activation.The present study aimed to determine the impact of NPC1 on Ca2+ mobilization during platelet activation in thrombo-occlusive diseases.Using MK/platelet-specific knockout mice of Npc1 (Npc1Pf4∆/Pf4∆), ex vivo and in vitro approaches as well as in vivo models of thrombosis, we investigated the effect of Npc1 on platelet function and thrombus formation.We showed that Npc1Pf4∆/Pf4∆ platelets display increased sphingosine levels and a locally impaired membrane-associated and SERCA3-dependent Ca2+ mobilisation compared to platelets from wildtype littermates (Npc1lox/lox). Further, we observed decreased platelet.Our findings highlight that NPC1 regulates membrane-associated and SERCA3-dependent Ca2+ mobilization during platelet activation and that MK/platelet-specific ablation of Npc1 protects against experimental models of arterial thrombosis and myocardial or cerebral ischemia/reperfusion injury.
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