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首页> 外文期刊>PLoS One >The acute myeloid leukemia associated AML1-ETO fusion protein alters the transcriptome and cellular progression in a single-oncogene expressing in vitro induced pluripotent stem cell based granulocyte differentiation model
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The acute myeloid leukemia associated AML1-ETO fusion protein alters the transcriptome and cellular progression in a single-oncogene expressing in vitro induced pluripotent stem cell based granulocyte differentiation model

机译:急性髓性白血病相关的AML1-eTO融合蛋白在体外诱导的多能干细胞基粒细胞分化模型中表达单腺苷的转录组和细胞进展改变了转录组和细胞进展

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摘要

Acute myeloid leukemia (AML) is characterized by recurrent mutations that affect normal hematopoiesis. The analysis of human AMLs has mostly been performed using end-point materials, such as cell lines and patient derived AMLs that also carry additional contributing mutations. The molecular effects of a single oncogenic hit, such as expression of the AML associated oncoprotein AML1-ETO on hematopoietic development and transformation into a (pre-) leukemic state still needs further investigation. Here we describe the development and characterization of an induced pluripotent stem cell (iPSC) system that allows in vitro differentiation towards different mature myeloid cell types such as monocytes and granulocytes. During in vitro differentiation we expressed the AML1-ETO fusion protein and examined the effects of the oncoprotein on differentiation and the underlying alterations in the gene program at 8 different time points. Our analysis revealed that AML1-ETO as a single oncogenic hit in a non-mutated background blocks granulocytic differentiation, deregulates the gene program via altering the acetylome of the differentiating granulocytic cells, and induces t(8;21) AML associated leukemic characteristics. Together, these results reveal that inducible oncogene expression during in vitro differentiation of iPS cells provides a valuable platform for analysis of aberrant regulation in disease.
机译:急性髓性白血病(AML)的特征是影响正常血液杂物的复发突变。人AML的分析主要是使用终点材料进行的,例如细胞系和患者衍生的AML,其也携带额外的促进突变。单一致癌物的分子效应,例如AML的表达相关的癌蛋白AML1-ETO对造血发育和转化成(Pre-)白血病状态仍需要进一步调查。在这里,我们描述了诱导的多能干细胞(IPSC)系统的开发和表征,其允许对不同成熟的髓细胞类型进行体外分化,例如单核细胞和粒细胞。在体外分化期间,我们表达了AML1-ETO融合蛋白,并在8种不同的时间点检查了癌蛋白对分化的影响和基因程序中的基本改变。我们的分析显示,AML1-ETO作为在非突变背景块中的单个致癌粒子粒细胞分化,通过改变分化粒细胞细胞的乙酰胺,通过改变缩小粒细胞细胞的乙酰物,并诱导T(8; 21)AML相关的白血病特征。这些结果表明,IPS细胞的体外分化期间的诱导型癌基因表达为分析异常调节的疾病的分析提供了有价值的平台。

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