Department of Biological Sciences, University of North Texas, 1511 West Sycamore Street, Denton, TX, 76203, USA.
Sci Rep. 2023 Sep 26;13(1):16066. doi: 10.1038/s41598-023-42868-7.
Previous studies have shown that human platelets and megakaryocytes carry microRNAs suggesting their role in platelet function and megakaryocyte development, respectively. However, a comprehensive study on the microRNAs and their targets has not been undertaken. Zebrafish thrombocytes could be used as a model to study their role in megakaryocyte maturation and platelet function because thrombocytes have both megakaryocyte features and platelet properties. In our laboratory, we identified 15 microRNAs in thrombocytes using single-cell RNA sequencing. We knocked down each of these 15 microRNAs by the piggyback method and found knockdown of three microRNAs, mir-7148, let-7b, and mir-223 in adult zebrafish led to an increase in the percentage of thrombocytes. Functional thrombocyte analysis using plate tilt assay showed no modulatory effect of the three microRNAs on thrombocyte aggregation/agglutination. We also found enhanced thrombosis using arterial laser thrombosis assay in a group of zebrafish larvae after mir-7148, let-7b, and mir-223 knockdowns. These results suggested mir-7148, let-7b, and mir-223 are repressors for thrombocyte production. We then explored miRWalk database for let-7b downstream targets and then selected those that are expressed in thrombocytes, and from this list based on their role in differentiation selected 14 genes, rorca, tgif1, rfx1a, deaf1, zbtb18, mafba, cebpa, spi1a, spi1b, fhl3b, ikzf1, irf5, irf8, and lbx1b that encode transcriptional regulators. The qRT-PCR analysis of expression levels of the above genes following let-7b knockdown showed changes in the expression of 13 targets. We then studied the effect of the 13 targets on thrombocyte production and identified 5 genes, irf5, tgif1, irf8, cebpa, and rorca that showed thrombocytosis and one gene, ikzf1 that showed thrombocytopenia. Furthermore, we tested whether mir-223 regulates any of the above 13 transcription factors after mir-223 knockdown using qRT-PCR. Six of the 13 genes showed similar gene expression as observed with let-7b knockdown and 7 genes showed opposing results. Thus, our results suggested a possible regulatory network in common with both let-7b and mir-223. We also identified that tgif1, cebpa, ikzf1, irf5, irf8, and ikzf1 play a role in thrombopoiesis. Since the ikzf1 gene showed a differential expression profile in let-7b and mir-223 knockdowns but resulted in thrombocytopenia in ikzf1 knockdown in both adults and larvae we also studied an ikzf1 mutant and showed the mutant had thrombocytopenia. Taken together, these studies showed that thrombopoiesis is controlled by a network of transcription regulators that are regulated by multiple microRNAs in both positive and negative manner resulting in overall inhibition of thrombopoiesis.
先前的研究表明,人类血小板和巨核细胞携带 microRNAs,提示它们分别在血小板功能和巨核细胞发育中发挥作用。然而,尚未对 microRNAs 及其靶标进行全面研究。斑马鱼血小板可作为研究其在巨核细胞成熟和血小板功能中的作用的模型,因为血小板具有巨核细胞和血小板的特征。在我们的实验室中,我们使用单细胞 RNA 测序在血小板中鉴定出 15 种 microRNAs。我们通过 piggyback 方法敲低了这 15 种 microRNAs 中的每一种,发现成年斑马鱼中三种 microRNAs(mir-7148、let-7b 和 mir-223)的敲低导致血小板的百分比增加。使用血小板倾斜测定法对功能性血小板进行分析表明,这三种 microRNAs 对血小板聚集/凝集没有调节作用。我们还发现,在一组经 mir-7148、let-7b 和 mir-223 敲低的斑马鱼幼虫中,使用动脉激光血栓形成测定法进行增强血栓形成。这些结果表明 mir-7148、let-7b 和 mir-223 是血小板生成的抑制剂。然后,我们在 miRWalk 数据库中探索了 let-7b 的下游靶标,然后选择了在血小板中表达的靶标,并根据它们在分化中的作用,从该列表中选择了 14 个基因,rorca、tgif1、rfx1a、deaf1、zbtb18、mafba、cebpa、spi1a、spi1b、fhl3b、ikzf1、irf5、irf8 和 lbx1b,它们编码转录调节剂。在 let-7b 敲低后,对上述基因的 qRT-PCR 分析显示 13 个靶标的表达水平发生变化。然后,我们研究了 13 个靶基因对血小板生成的影响,鉴定出 5 个基因,即 irf5、tgif1、irf8、cebpa 和 rorca,它们表现为血小板增多,而一个基因 ikzf1 表现为血小板减少。此外,我们使用 qRT-PCR 测试了 mir-223 敲低后是否调节上述 13 个转录因子中的任何一个。在 13 个基因中,有 6 个基因的表达与 let-7b 敲低观察到的相似,而 7 个基因的结果则相反。因此,我们的结果表明,可能存在一个与 let-7b 和 mir-223 共同的调节网络。我们还发现,tgif1、cebpa、ikzf1、irf5、irf8 和 ikzf1 在血小板生成中发挥作用。由于 ikzf1 基因在 let-7b 和 mir-223 敲低中表现出不同的表达谱,但在 ikzf1 敲低中导致成年和幼虫的血小板减少,我们还研究了 ikzf1 突变体,并表明突变体具有血小板减少症。总之,这些研究表明,血小板生成受转录调节因子网络的控制,该网络受多种 microRNAs 的正向和负向调节,导致总体抑制血小板生成。