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Platelets and Thrombopoiesis: Regulation of platelet myosin light chain (MYL9) by RUNX1: implications for thrombocytopenia and platelet dysfunction in RUNX1 haplodeficiency

机译:血小板和血小板生成:RUNX1对血小板肌球蛋白轻链(MYL9)的调节:RUNX1单倍体缺乏症对血小板减少和血小板功能障碍的影响

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摘要

Mutations in transcription factor RUNX1 are associated with familial platelet disorder, thrombocytopenia, and predisposition to leukemia. We have described a patient with thrombocytopenia and impaired agonist-induced platelet aggregation, secretion, and glycoprotein (GP) IIb-IIIa activation, associated with a RUNX1 mutation. Platelet myosin light chain (MLC) phosphorylation and transcript levels of its gene MYL9 were decreased. Myosin IIA and MLC phosphorylation are important in platelet responses to activation and regulate thrombopoiesis by a negative regulatory effect on premature proplatelet formation. We addressed the hypothesis that MYL9 is a transcriptional target of RUNX1. Chromatin immunoprecipitation (ChIP) using megakaryocytic cells revealed RUNX1 binding to MYL9 promoter region −729/−542 basepairs (bp), which contains 4 RUNX1 sites. Electrophoretic mobility shift assay showed RUNX1 binding to each site. In transient ChIP assay, mutation of these sites abolished binding of RUNX1 to MYL9 promoter construct. In reporter gene assays, deletion of each RUNX1 site reduced activity. MYL9 expression was inhibited by RUNX1 short interfering RNA (siRNA) and enhanced by RUNX1 overexpression. RUNX1 siRNA decreased cell spreading on collagen and fibrinogen. Our results constitute the first evidence that the MYL9 gene is a direct target of RUNX1 and provide a mechanism for decreased platelet MYL9 expression, MLC phosphorylation, thrombocytopenia, and platelet dysfunction associated with RUNX1 mutations.
机译:转录因子RUNX1的突变与家族性血小板疾病,血小板减少症和白血病的易感性有关。我们已经描述了血小板减少症和激动剂诱导的血小板聚集,分泌和糖蛋白(GP)IIb-IIIa激活受损的患者,并伴有RUNX1突变。血小板肌球蛋白轻链(MLC)磷酸化和其基因MYL9的转录水平下降。肌球蛋白IIA和MLC磷酸化在血小板对激活的反应中起重要作用,并通过对早熟的前血小板形成的负面调节作用来调节血小板生成。我们解决了MYL9是RUNX1转录目标的假设。使用巨核细胞的染色质免疫沉淀(ChIP)显示RUNX1与MYL9启动子区域-729 / -542碱基对(bp)结合,该碱基对包含4个RUNX1位点。电泳迁移率变动分析表明RUNX1与每个位点结合。在瞬时ChIP测定中,这些位点的突变消除了RUNX1与MYL9启动子构建体的结合。在报告基因测定中,每个RUNX1位点的缺失都会降低活性。 MYL9表达被RUNX1短干扰RNA(siRNA)抑制,并被RUNX1过表达增强。 RUNX1 siRNA减少了胶原蛋白和纤维蛋白原上的细胞扩散。我们的结果构成了MYL9基因是RUNX1的直接靶点的第一个证据,并提供了减少MYL9表达,MLC磷酸化,血小板减少和与RUNX1突变相关的血小板功能障碍的机制。

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