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Arf6 controls platelet spreading and clot retraction via integrin αIIbβ3 trafficking

机译:Arf6通过整合素αIIbβ3转运控制血小板扩散和血凝块收缩

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摘要

Platelet and megakaryocyte endocytosis is important for loading certain granule cargo (ie, fibrinogen [Fg] and vascular endothelial growth factor); however, the mechanisms of platelet endocytosis and its functional acute effects are understudied. Adenosine 5'-diphosphate–ribosylation factor 6 (Arf6) is a small guanosine triphosphate–binding protein that regulates endocytic trafficking, especially of integrins. To study platelet endocytosis, we generated platelet-specific Arf6 knockout (KO) mice. Arf6 KO platelets had less associated Fg suggesting that Arf6 affects αIIbβ3-mediated Fg uptake and/or storage. Other cargo was unaffected. To measure Fg uptake, mice were injected with biotinylated- or fluorescein isothiocyanate (FITC)–labeled Fg. Platelets from the injected Arf6 KO mice showed lower accumulation of tagged Fg, suggesting an uptake defect. Ex vivo, Arf6 KO platelets were also defective in FITC-Fg uptake and storage. Immunofluorescence analysis showed initial trafficking of FITC-Fg to a Rab4-positive compartment followed by colocalization with Rab11-positive structures, suggesting that platelets contain and use both early and recycling endosomes. Resting and activated αIIbβ3 levels, as measured by flow cytometry, were unchanged; yet, Arf6 KO platelets exhibited enhanced spreading on Fg and faster clot retraction. This was not the result of alterations in αIIbβ3 signaling, because myosin light-chain phosphorylation and Rac1/RhoA activation were unaffected. Consistent with the enhanced clot retraction and spreading, Arf6 KO mice showed no deficits in tail bleeding or FeCl3-induced carotid injury assays. Our studies present the first mouse model for defining the functions of platelet endocytosis and suggest that altered integrin trafficking may affect the efficacy of platelet function.
机译:血小板和巨核细胞的内吞作用对于装载某些颗粒货物(即纤维蛋白原[Fg]和血管内皮生长因子)很重要。然而,血小板内吞作用的机制及其功能急性作用尚未得到研究。腺苷5'-二磷酸核糖基化因子6(Arf6)是一种小鸟苷三磷酸结合蛋白,可调节胞吞运输,特别是整合素的运输。为了研究血小板内吞作用,我们生成了血小板特异性Arf6基因敲除(KO)小鼠。 Arf6 KO血小板的Fg较少,提示Arf6影响αIIbβ3介导的Fg摄取和/或存储。其他货物不受影响。为了测量Fg摄取,给小鼠注射生物素化或异硫氰酸荧光素(FITC)标记的Fg。注射的Arf6 KO小鼠的血小板显示较低的标记Fg积累,表明摄取缺陷。在体外,Alf6 KO血小板在FITC-Fg摄取和储存方面也存在缺陷。免疫荧光分析显示,FITC-Fg最初转运至Rab4阳性区室,然后与Rab11阳性结构共定位,表明血小板含有并使用早期和回收的内体。通过流式细胞仪测定的静止和活化的αIIbβ3水平没有变化;然而,Arf6 KO血小板在Fg上的散布增强,凝块收缩更快。这不是αIIbβ3信号改变的结果,因为肌球蛋白轻链磷酸化和Rac1 / RhoA激活不受影响。与增强的血块回缩和扩散一致,Alf6 KO小鼠在尾巴出血或FeCl3诱导的颈动脉损伤试验中未显示任何缺陷。我们的研究提出了第一个用于定义血小板内吞功能的小鼠模型,并表明改变的整联蛋白运输可能会影响血小板功能的功效。

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