Shah Najaf A, Levesque Marshall J, Raj Arjun, Sarkar Casim A
Genomics and Computational Biology Graduate Group, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Department of Bioengineering, School of Engineering and Applied Science, University of Pennsylvania, Philadelphia, PA 19104, USA.
J Cell Sci. 2015 Aug 15;128(16):3009-17. doi: 10.1242/jcs.158436. Epub 2015 Jul 9.
Hematopoietic lineage commitment is regulated by cytokines and master transcription factors, but it remains unclear how a progenitor cell chooses a lineage in the face of conflicting cues. Through transcript counting in megakaryocyte-erythroid progenitors undergoing erythropoiesis, we show that the expression levels of the pro-erythropoiesis transcription factor EKLF (also known as KLF1) and receptor EpoR are inversely correlated with their pro-megakaryopoiesis counterparts, FLI-1 and TpoR (also known as MPL). Notably, as progenitors commit to the erythrocyte lineage, EpoR is upregulated and TpoR is strongly downregulated, thus boosting the potency of the pro-erythropoiesis cue erythropoietin and effectively eliminating the activity of the pro-megakaryopoiesis cue thrombopoietin. Based on these findings, we propose a new model for exclusive decision making that explicitly incorporates signals from extrinsic cues, and we experimentally confirm a model prediction of temporal changes in transcript noise levels in committing progenitors. Our study suggests that lineage-specific receptor levels can modulate potencies of cues to achieve robust commitment decisions.
造血谱系定向分化受细胞因子和主要转录因子调控,但尚不清楚祖细胞在面对相互冲突的信号时如何选择谱系。通过对正在进行红细胞生成的巨核细胞-红系祖细胞进行转录本计数,我们发现促红细胞生成转录因子EKLF(也称为KLF1)和受体EpoR的表达水平与其促巨核细胞生成对应物FLI-1和TpoR(也称为MPL)呈负相关。值得注意的是,随着祖细胞定向分化为红细胞谱系,EpoR上调而TpoR强烈下调,从而增强了促红细胞生成信号促红细胞生成素的效力,并有效消除了促巨核细胞生成信号血小板生成素的活性。基于这些发现,我们提出了一种新的排他性决策模型,该模型明确纳入了来自外在信号的信号,并且我们通过实验证实了该模型对定向祖细胞中转录本噪声水平随时间变化的预测。我们的研究表明,谱系特异性受体水平可以调节信号的效力,以实现稳健的定向分化决策。