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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >A dual role for the class III PI3K, Vps34, in platelet production and thrombus growth
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A dual role for the class III PI3K, Vps34, in platelet production and thrombus growth

机译:III类PI3K,VPS34,血小板生产和血栓生长的双重作用

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To uncover the role of Vps34, the sole class III phosphoinositide 3-kinase (PI3K), in megakaryocytes (MKs) and platelets, we created a mouse model with Vps34 deletion in the MK/platelet lineage (Pf4-Cre/Vps34(lox/lox)). Deletion of Vps34 in MKs led to the loss of its regulator protein, Vps15, and was associated with microthrombocytopenia and platelet granule abnormalities. Although Vps34 deficiency did not affect MK polyploidisation or proplatelet formation, it dampened MK granule biogenesis and directional migration toward an SDF1 alpha gradient, leading to ectopic platelet release within the bone marrow. In MKs, the level of phosphatidylinositol 3-monophosphate (PI3P) was significantly reduced by Vps34 deletion, resulting in endocytic/trafficking defects. In platelets, the basal level of PI3P was only slightly affected by Vps34 loss, whereas the stimulation-dependent pool of PI3P was significantly decreased. Accordingly, a significant increase in the specific activity of Vps34 lipid kinase was observed after acute platelet stimulation. Similar to Vps34-deficient platelets, ex vivo treatment of wild-type mouse or human platelets with the Vps34-specific inhibitors, SAR405 and VPS34-IN1, induced abnormal secretion and affected thrombus growth at arterial shear rate, indicating a role for Vps34 kinase activity in platelet activation, independent from its role in MKs. In vivo, Vps34 deficiency had no impact on tail bleeding time, but significantly reduced platelet prothrombotic capacity after carotid injury. This study uncovers a dual role for Vps34 as a regulator of platelet production by MKs and as an unexpected regulator of platelet activation and arterial thrombus formation dynamics.
机译:要揭示vps34的作用,III类磷酸膦酸3-激酶(PI3K),在巨核细胞(MKS)和血小板中,我们在MK /血小板谱系中使用VPS34删除了一种小鼠模型(PF4-CRE / VPS34(LOX /熏鲑鱼))。 MKS中的VPS34删除导致其调节蛋白VPS15的损失,并与微生物细胞缺乏症和血小板颗粒异常有关。虽然VPS34缺乏不影响MK多倍体化或丙替塞形成,但它阻尼MK颗粒生物发生和向SDF1α梯度定向迁移,导致骨髓内侧异位血小板释放。在MKS中,通过VPS34缺失显着降低了磷脂酰肌醇3-单磷酸溶胶(PI3P)的水平,导致内吞/贩运缺陷。在血小板中,PI3P的基础水平仅受VPS34损失略微影响,而PI3P的刺激依赖性池显着降低。因此,在急性血小板刺激后观察到VPS34脂质激酶的特异性活性的显着增加。类似于VPS34缺陷的血小板,以VPS34特异性抑制剂,SAR405和VPS34-IN1的野生型小鼠或人血小板的前体内治疗,诱导异常分泌并受动脉剪切速率影响血栓生长,表明VPS34激酶活性的作用在血小板激活中,独立于其在MKS中的作用。体内,VPS34缺乏对尾部出血的影响没有影响,但在颈动脉损伤后显着降低了血小板凝血性能力。本研究揭示了VPS34作为MKS的血小板生产调节剂的双重作用,作为血小板激活和动脉血栓形成动态的意外调节器。

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