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Genome-wide lineage-specific transcriptional networks underscore Ikaros-dependent lymphoid priming in hematopoietic stem cells.

机译:全基因组谱系特异性转录网络强调造血干细胞中依卡洛斯依赖性淋巴样启动。

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摘要

The mechanisms regulating lineage potential during early hematopoiesis were investigated. First, a cascade of lineage-affiliated gene expression signatures, primed in hematopoietic stem cells (HSCs) and differentially propagated in lineage-restricted progenitors, was identified. Lymphoid transcripts were primed as early as the HSC, together with myeloid and erythroid transcripts. Although this multilineage priming was resolved upon subsequent lineage restrictions, an unexpected cosegregation of lymphoid and myeloid gene expression and potential past a nominal myeloid restriction point was identified. Finally, we demonstrated that whereas the zinc finger DNA-binding factor Ikaros was required for induction of lymphoid lineage priming in the HSC, it was also necessary for repression of genetic programs compatible with self-renewal and multipotency downstream of the HSC. Taken together, our studies provide new insight into the priming and restriction of lineage potentials during early hematopoiesis and identify Ikaros as a key bivalent regulator of this process.
机译:研究了在早期造血过程中调节谱系潜能的机制。首先,鉴定了一系列的沿袭相关基因表达特征,它们在造血干细胞(HSC)中引发,并在沿袭限制祖细胞中差异繁殖。最早在HSC上启动了淋巴样转录物,以及髓样和红系转录物。尽管此多谱系启动可在随后的谱系限制下解决,但仍可识别出淋巴样和髓样基因表达的意外共分离以及超过标称髓样限制点的潜力。最后,我们证明了在HSC中诱导淋巴谱系启动需要锌指DNA结合因子Ikaros,但对于抑制与HSC下游自我更新和多能性兼容的遗传程序也是必需的。综上所述,我们的研究为早期造血过程中血统潜能的引发和限制提供了新的见识,并确定了Ikaros是该过程的关键二价调节剂。

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