Dahariya Swati, Raghuwanshi Sanjeev, Thamodaran Vasanth, Velayudhan Shaji R, Gutti Ravi Kumar
Stem Cell Research Laboratory, Department of Biochemistry, School of Life Sciences, University of Hyderabad, Hyderabad, India (S.D., S.R., R.K.G.) and Centre for Stem Cell Research, Christian Medical College, Vellore, India (V.T., S.R.V.).
Stem Cell Research Laboratory, Department of Biochemistry, School of Life Sciences, University of Hyderabad, Hyderabad, India (S.D., S.R., R.K.G.) and Centre for Stem Cell Research, Christian Medical College, Vellore, India (V.T., S.R.V.)
J Pharmacol Exp Ther. 2023 Jan;384(1):92-101. doi: 10.1124/jpet.121.001095. Epub 2022 Oct 15.
Megakaryocytes (MKs) are rare polyploid cells found in the bone marrow and produce platelets. Platelets are small cell fragments that are essential during wound healing and vascular hemostasis. In vitro differentiation of MKs from human-induced pluripotent stem cell-derived CD34 hematopoietic stem cells (hiPSC-HSCs) could provide an alternative treatment option for thrombocytopenic patients as a platelet source. In this approach, we developed a method to produce functional MKs from hiPSC-HSCs using a xeno-free and feeder-free condition and minimize the variation and risk from animal-derived products in cell culture. We have also investigated the genome-wide expression as well as functional significance of long noncoding RNAs (lncRNAs) in hiPSC-HSC-derived MKs to get insight into MK biology. We have performed lncRNAs expression profiling by using the Human LncProfilers qPCR Array Kit and identified 26 differentially regulated lncRNAs in hiPSC-HSC-derived MKs as compared with those in hiPSC-HSCs. HOX antisense intergenic RNA myeloid 1 (HOTAIRM1) was the most highly upregulated lncRNA in hiPSC-HSC-derived MKs and phorbol 12-myristate 13-acetate (PMA)-induced megakaryocytic-differentiating K562 cells. Furthermore, we have studied the potential mechanism of HOTAIRM1 based on the interactions between HOTAIRM1, p53, and miR-125b in PMA-induced K562 cells. Our results demonstrated that during MK maturation, HOTAIRM1 might be associated with the transcriptional regulation of p53 via acting as a decoy for miR-125b. Thus, the interaction between HOTAIRM1, p53, and miR-125b is likely involved in controlling cell cycling (cyclin D1), reactive oxygen species production, and apoptosis to support terminal maturation of MKs. SIGNIFICANCE STATEMENT: In vitro generation of megakaryocytes (MKs) from human-induced pluripotent stem cell-derived hematopoietic stem cells (hiPSC-HSCs) could provide an alternative source of platelets for treating thrombocytopenic patients. This study has investigated the functional significance of long non-coding RNAs in hiPSC-HSC-derived MKs, which remains unclear. This study's findings suggest that the regulatory role of HOX antisense intergenic RNA myeloid 1 (HOTAIRM1) in p53-mediated regulation of cyclin D1 during megakaryocytopoiesis is to promote MK maturation by decoying miR-125b.
巨核细胞(MKs)是存在于骨髓中的罕见多倍体细胞,可产生血小板。血小板是小细胞碎片,在伤口愈合和血管止血过程中至关重要。从人诱导多能干细胞衍生的CD34造血干细胞(hiPSC-HSCs)体外分化出MKs可为血小板减少症患者提供一种替代治疗选择,作为血小板来源。在这种方法中,我们开发了一种在无血清和无饲养层条件下从hiPSC-HSCs产生功能性MKs的方法,并将细胞培养中动物源产品的变异和风险降至最低。我们还研究了hiPSC-HSC衍生的MKs中长链非编码RNA(lncRNAs)的全基因组表达及其功能意义,以深入了解MK生物学。我们使用人类LncProfilers qPCR阵列试剂盒进行了lncRNAs表达谱分析,与hiPSC-HSCs相比,在hiPSC-HSC衍生的MKs中鉴定出26种差异调节的lncRNAs。HOX反义基因间RNA髓系1(HOTAIRM1)是hiPSC-HSC衍生的MKs和佛波醇12-肉豆蔻酸酯13-乙酸酯(PMA)诱导的巨核细胞分化K562细胞中上调程度最高的lncRNA。此外,我们基于HOTAIRM1、p53和miR-125b在PMA诱导的K562细胞中的相互作用,研究了HOTAIRM1的潜在机制。我们的结果表明,在MK成熟过程中,HOTAIRM1可能通过充当miR-125b的诱饵,与p53的转录调控相关。因此,HOTAIRM1、p53和miR-125b之间的相互作用可能参与控制细胞周期(细胞周期蛋白D1)、活性氧产生和细胞凋亡,以支持MK的终末成熟。意义声明:从人诱导多能干细胞衍生的造血干细胞(hiPSC-HSCs)体外生成巨核细胞(MKs)可为治疗血小板减少症患者提供替代血小板来源。本研究调查了hiPSC-HSC衍生的MKs中长链非编码RNA的功能意义,目前尚不清楚。本研究结果表明,HOX反义基因间RNA髓系1(HOTAIRM1)在巨核细胞生成过程中对p53介导的细胞周期蛋白D1调节的作用是通过诱捕miR-125b促进MK成熟。