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Partial reprogramming of heterologous cells by defined factors to generate megakaryocyte lineage-restricted biomolecules

机译:通过定义的因子对异源细胞进行部分重编程以生成巨核细胞谱系限制的生物分子

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摘要

The ability of transcriptional regulators to drive lineage conversion of somatic cells offers great potential for the treatment of human disease. To explore the concept of switching on specific target genes in heterologous cells, we developed a model system to screen candidate factors for their ability to activate the archetypal megakaryocyte-specific chemokine platelet factor 4 (PF4) in fibroblasts. We found that co-expression of the transcriptional regulators GATA1 and FLI1 resulted in a significant increase in levels of PF4, which became magnified over time. This finding demonstrates that such combinations can be used to produce potentially beneficial chemokines in readily available heterologous cell types.
机译:转录调节子驱动体细胞谱系转化的能力为治疗人类疾病提供了巨大的潜力。为了探索在异源细胞中开启特定靶基因的概念,我们开发了一个模型系统,以筛选候选因子激活成纤维细胞中原型巨核细胞特异性趋化因子血小板因子4(PF4)的能力。我们发现转录调节因子GATA1和FLI1的共表达导致PF4的水平显着增加,并随着时间的推移而被放大。该发现表明,这种组合可用于在容易获得的异源细胞类型中产生潜在有益的趋化因子。

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