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Hematopoiesis: Expression analysis of primary mouse megakaryocyte differentiation and its application in identifying stage-specific molecular markers and a novel transcriptional target of NF-E2

机译:造血作用:原代小鼠巨核细胞分化的表达分析及其在鉴定阶段特异性分子标志物和NF-E2新型转录靶标中的应用

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摘要

Megakaryocyte (MK) differentiation is well described in morphologic terms but its molecular counterparts and the basis for platelet release are incompletely understood. We profiled mRNA expression in populations of primary mouse MKs representing successive differentiation stages. Genes associated with DNA replication are highly expressed in young MKs, in parallel with endomitosis. Intermediate stages are characterized by disproportionate expression of genes associated with the cytoskeleton, cell migration, and G-protein signaling, whereas terminally mature MKs accumulate hemostatic factors, including many membrane proteins. We used these expression profiles to extract a reliable panel of molecular markers for MKs of early, intermediate, or advanced differentiation and establish the value of this marker panel using mouse models of defective thrombopoiesis resulting from absence of GATA1, NF-E2, or tubulin β1. Computational analysis of the promoters of late-expressed MK genes identified new candidate targets for NF-E2, a critical transcriptional regulator of platelet release. One such gene encodes the kinase adaptor protein LIMS1/PINCH1, which is highly expressed in MKs and platelets and significantly reduced in NF-E2–deficient cells. Transactivation studies and chromatin immunoprecipitation implicate Lims1 as a direct target of NF-E2 regulation. Attribution of stage-specific genes, in combination with various applications, thus constitutes a powerful way to study MK differentiation and platelet biogenesis.
机译:巨核细胞(MK)的分化在形态学方面已得到很好的描述,但其分子对应物和血小板释放的基础尚不完全清楚。我们分析了代表连续分化阶段的原代小鼠MK群体中的mRNA表达。与DNA复制相关的基因在年轻的MK中高表达,与内吞症同时发生。中间阶段的特征是与细胞骨架,细胞迁移和G蛋白信号传导相关的基因表达不成比例,而最终成熟的MK会积聚止血因子,包括许多膜蛋白。我们使用这些表达谱为早期,中期或晚期分化的MK提取了可靠的分子标记物组,并使用由于缺乏GATA1,NF-E2或微管蛋白β1而导致的缺陷性血小板生成的小鼠模型建立了该标记物组的价值。 。对后期表达的MK基因启动子的计算分析确定了NF-E2(血小板释放的关键转录调节因子)的新候选靶标。一个这样的基因编码激酶衔接蛋白LIMS1 / PINCH1,该蛋白在MK和血小板中高表达,在NF-E2缺陷细胞中显着减少。反式激活研究和染色质免疫沉淀表明Lims1是NF-E2调控的直接靶标。因此,阶段特异性基因的归因与各种应用相结合,构成了研究MK分化和血小板生物发生的有效方法。

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