Center for Stem Cell Research (A Unit of InStem, Bengaluru, India), Christian Medical College, Vellore 632002, Tamil Nadu, India.
Manipal Academy of Higher Education, Manipal 576104, Karnataka, India.
Cells. 2021 Mar 1;10(3):523. doi: 10.3390/cells10030523.
Reliable human erythroid progenitor cell (EPC) lines that can differentiate to the later stages of erythropoiesis are important cellular models for studying molecular mechanisms of human erythropoiesis in normal and pathological conditions. Two immortalized erythroid progenitor cells (iEPCs), HUDEP-2 and BEL-A, generated from CD34 hematopoietic progenitors by the doxycycline (dox) inducible expression of human papillomavirus E6 and E7 (HEE) genes, are currently being used extensively to study transcriptional regulation of human erythropoiesis and identify novel therapeutic targets for red cell diseases. However, the generation of iEPCs from patients with red cell diseases is challenging as obtaining a sufficient number of CD34 cells require bone marrow aspiration or their mobilization to peripheral blood using drugs. This study established a protocol for culturing early-stage EPCs from peripheral blood (PB) and their immortalization by expressing HEE genes. We generated two iEPCs, PBiEPC-1 and PBiEPC-2, from the peripheral blood mononuclear cells (PBMNCs) of two healthy donors. These cell lines showed stable doubling times with the properties of erythroid progenitors. PBiEPC-1 showed robust terminal differentiation with high enucleation efficiency, and it could be successfully gene manipulated by gene knockdown and knockout strategies with high efficiencies without affecting its differentiation. This protocol is suitable for generating a bank of iEPCs from patients with rare red cell genetic disorders for studying disease mechanisms and drug discovery.
能够分化为红细胞生成后期的可靠人类红系祖细胞 (EPC) 系对于研究正常和病理条件下人类红细胞生成的分子机制非常重要。两种永生化的红系祖细胞 (iEPC),HUDEP-2 和 BEL-A,是通过在 CD34 造血祖细胞中诱导表达人乳头瘤病毒 E6 和 E7 (HEE) 基因的强力霉素 (dox) 产生的,目前广泛用于研究人类红细胞生成的转录调控,并确定红细胞疾病的新治疗靶点。然而,从红细胞疾病患者中产生 iEPC 具有挑战性,因为获得足够数量的 CD34 细胞需要骨髓抽吸或使用药物将其动员到外周血中。本研究建立了一种从外周血 (PB) 培养早期 EPC 并通过表达 HEE 基因使其永生化的方案。我们从两位健康供体的外周血单个核细胞 (PBMNC) 中生成了两种 iEPC,PBiEPC-1 和 PBiEPC-2。这些细胞系具有稳定的倍增时间和红系祖细胞的特性。PBiEPC-1 表现出强大的终末分化,具有较高的去核效率,并且可以通过基因敲低和敲除策略进行成功的基因操作,而不会影响其分化。该方案适用于从罕见的红细胞遗传疾病患者中生成 iEPC 库,用于研究疾病机制和药物发现。