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Hemostasis Thrombosis and Vascular Biology: Serglycin proteoglycan deletion induces defects in platelet aggregation and thrombus formation in mice

机译:止血血栓形成和血管生物学:Serglycin蛋白聚糖缺失引起小鼠血小板聚集和血栓形成缺陷

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摘要

Serglycin (SG), the hematopoietic cell secretory granule proteoglycan, is crucial for storage of specific secretory proteins in mast cells, neutrophils, and cytotoxic T lymphocytes. We addressed the role of SG in platelets using SG−/− mice. Wild-type (WT) but not SG−/− platelets contained chondroitin sulfate proteoglycans. Electron microscopy revealed normal α-granule structure in SG−/− platelets. However, SG−/− platelets and megakaryocytes contained unusual scroll-like membranous inclusions, and SG−/− megakaryocytes showed extensive emperipolesis of neutrophils. SG−/− platelets had reduced ability to aggregate in response to low concentrations of collagen or PAR4 thrombin receptor agonist AYPGKF, and reduced fibrinogen binding after AYPGKF, but aggregated normally to ADP. 3H-serotonin and ATP secretion were greatly reduced in SG−/− platelets. The α-granule proteins platelet factor 4, β-thromboglobulin, and platelet-derived growth factor were profoundly reduced in SG−/− platelets. Exposure of P-selectin and αIIb after thrombin treatment was similar in WT and SG−/− platelets. SG−/− mice exhibited reduced carotid artery thrombus formation after exposure to FeCl3. This study demonstrates that SG is crucial for platelet function and thrombus formation. We propose that SG−/− platelet function deficiencies are related to inadequate packaging and secretion of selected α-granule proteins and reduced secretion of dense granule contents critical for platelet activation.
机译:甘草素(SG)是造血细胞分泌的颗粒蛋白聚糖,对于肥大细胞,中性粒细胞和细胞毒性T淋巴细胞中特定分泌蛋白的储存至关重要。我们使用SG -/-小鼠研究了SG在血小板中的作用。野生型(WT)而非SG -/-血小板中含有硫酸软骨素蛋白聚糖。电镜观察发现SG -/-血小板中α-颗粒结构正常。然而,SG -/-血小板和巨核细胞含有不寻常的涡旋状膜状包裹体,而SG -/-巨核细胞表现出广泛的嗜中性白细胞。 SG -/-血小板对低浓度的胶原蛋白或PAR4凝血酶受体激动剂AYPGKF的聚集能力降低,并且在AYPGKF后纤维蛋白原结合降低,但与ADP正常聚集。 SG -/-血小板中 3 H-血清素和ATP的分泌大大减少。 SG -/-血小板中α-颗粒蛋白血小板因子4,β-血球蛋白和血小板衍生的生长因子显着降低。在凝血酶处理后,WT和SG -// 血小板中P-选择素和αIIb的暴露相似。 SG -/-小鼠暴露于FeCl3后,颈动脉血栓形成减少。这项研究表明,SG对于血小板功能和血栓形成至关重要。我们建议SG -/-血小板功能缺陷与所选α-颗粒蛋白的包装和分泌不足以及减少对血小板活化至关重要的致密颗粒含量的分泌有关。

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