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Induced pluripotent stem cell–based mapping of β-globin expression throughout human erythropoietic development

机译:诱导的多能干细胞基于β-球蛋白在人类红细胞发育过程中的表达

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摘要

Robust β-globin expression in erythroid cells derived from induced pluripotent stem cells (iPSCs) increases the resolution with which red blood cell disorders such as sickle cell disease and β thalassemia can be modeled in vitro. To better quantify efforts in augmenting β-globin expression, we report the creation of a β-globin reporter iPSC line that allows for the mapping of β-globin expression throughout human erythropoietic development in real time at single-cell resolution. Coupling this tool with single-cell RNA sequencing (scRNAseq) identified features that distinguish β-globin–expressing cells and allowed for the dissection of the developmental and maturational statuses of iPSC-derived erythroid lineage cells. Coexpression of embryonic, fetal, and adult globins in individual cells indicated that these cells correspond to a yolk sac erythromyeloid progenitor program of hematopoietic development, representing the onset of definitive erythropoiesis. Within this developmental program, scRNAseq analysis identified a gradient of erythroid maturation, with β-globin–expressing cells showing increased maturation. Compared with other cells, β-globin–expressing cells showed a reduction in transcripts coding for ribosomal proteins, increased expression of members of the ubiquitin-proteasome system recently identified to be involved in remodeling of the erythroid proteome, and upregulation of genes involved in the dynamic translational control of red blood cell maturation. These findings emphasize that definitively patterned iPSC-derived erythroblasts resemble their postnatal counterparts in terms of gene expression and essential biological processes, confirming their potential for disease modeling and regenerative medicine applications.
机译:衍生自多能干细胞(iPSC)的红系细胞中强大的β-珠蛋白表达提高了分辨率,可用于在体外模拟红细胞疾病(如镰状细胞病和β地中海贫血)。为了更好地量化增加β-球蛋白表达的努力,我们报道了创建一个β-球蛋白报告基因iPSC系,该系允许以单细胞分辨率实时映射整个人类红细胞发育过程中的β-球蛋白表达。将此工具与单细胞RNA测序(scRNAseq)结合使用,可以识别出可区分表达β珠蛋白的细胞的特征,并可以解剖iPSC衍生的类红细胞谱系细胞的发育和成熟状态。胚胎,胎儿和成人球蛋白在单个细胞中的共表达表明,这些细胞对应于造血发育的卵黄囊红血球样祖细胞程序,代表确定性的红细胞生成。在此开发程序中,scRNAseq分析确定了类红细胞成熟度的梯度,表达β-珠蛋白的细胞显示出成熟度的增加。与其他细胞相比,表达β-珠蛋白的细胞显示出编码核糖体蛋白的转录物减少,泛素-蛋白酶体系统成员的表达增加,最近发现该泛素-蛋白酶体系统与红细胞蛋白质组的重塑有关,并且参与该过程的基因上调动态翻译控制红细胞成熟。这些发现强调,在基因表达和必要的生物学过程方面,确定模式的iPSC来源的成红细胞与出生后的类似,证实了其在疾病建模和再生医学应用中的潜力。

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