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Microtubule plus-end tracking Adenopolyposis Coli negatively regulates proplatelet formation

机译:微管正末追踪腺息肉大肠菌对前列腺素的形成负调控

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Platelets are produced upon profound reorganization of mature megakaryocytes (MK) leading to proplatelet elongation and release into the blood stream, a process termed thrombopoiesis. This highly dynamic process requires microtubules (MT) reorganization by mechanisms that are still incompletely understood. Adenomatous polyposis coli (APC) is a microtubule plus-end tracking protein involved in the regulation of MT in a number of cell systems and its inactivation has been reported to alter hematopoiesis. The aim of our study was to investigate the role of APC in megakaryopoiesis and the final steps of platelet formation. Down-regulation of APC in cultured human MK by RNA interference increased endomitosis and the proportion of cells able to extend proplatelets (68.8% (shAPC1) and 52.5% (shAPC2) vs 28.1% in the control). Similarly an increased ploidy and amplification of the proplatelet network were observed in MK differentiated from Lin- cells of mice with APC-deficiency in the MK lineage. In accordance, these mice exhibited increased platelet counts when compared to wild type mice (1,323?±?111 vs 919?±?52 platelets/μL; n?=?12 p 0.0033**). Their platelets had a normal size, ultrastructure and number of microtubules coils and their main functions were also preserved. Loss of APC resulted in lower levels of acetylated tubulin and decreased activation of the Wnt signaling pathway. Thus, APC appears as an important regulator of proplatelet formation and overall thrombopoiesis.
机译:血小板是在成熟的巨核细胞(MK)彻底重组后产生的,从而导致血小板延长并释放到血流中,这一过程称为血小板生成。这种高度动态的过程需要通过尚未完全了解的机制对微管(MT)进行重组。腺瘤性息肉病大肠杆菌(APC)是一种微管正末尾追踪蛋白,在许多细胞系统中参与MT的调节,据报道其失活会改变造血功能。我们研究的目的是研究APC在巨核细胞生成中的作用以及血小板形成的最终步骤。 RNA干扰导致培养的人MK中APC的下调增加了内吞作用和能够扩展前血小板的细胞比例(68.8%(shAPC1)和52.5%(shAPC2),对照组为28.1%)。同样,在MK谱系中,从APC缺陷型小鼠的Lin细胞分化而来的MK中,观察到了倍数性的增加和前血小板网络的扩增。因此,与野生型小鼠相比,这些小鼠显示出增加的血小板计数(1,323±±111血小板对919±±52 52血小板/μL;n=12±0.0033**)。它们的血小板具有正常大小,超微结构和微管圈数,并且其主要功能也得以保留。 APC的丧失导致乙酰化微管蛋白水平降低,Wnt信号通路的激活降低。因此,APC似乎是前血小板形成和总体血小板生成的重要调节剂。

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