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Dynamic Transcription Factor Activity Profiles Reveal Key Regulatory Interactions During Megakaryocytic and Erythroid Differentiation

机译:动态转录因子活性谱揭示了巨核细胞和红系分化过程中的关键调控相互作用。

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摘要

The directed differentiation toward erythroid (E) or megakaryocytic (MK) lineages by the MK-E progenitor (MEP) could enhance the ex vivo generation of red blood cells and platelets for therapeutic transfusions. The lineage choice at the MEP bifurcation is controlled in large part by activity within the intracellular signal transduction network, the output of which determines the activity of transcription factors (TFs) and ultimately gene expression. Although many TFs have been implicated, E or MK differentiation is a complex process requiring multiple days, and the dynamics of TF activities during commitment and terminal maturation are relatively unexplored. Herein, we applied a living cell array for the large-scale, dynamic quantification of TF activities during MEP bifurcation. A panel of hematopoietic TFs (GATA-1, GATA-2, SCL/TAL1, FLI-1, NF-E2, PU.1, c-Myb) was characterized during E and MK differentiation of bipotent K562 cells. Dynamic TF activity profiles associated with differentiation towards each lineage were identified, and validated with previous reports. From these activity profiles, we show that GATA-1 is an important hub during early hemin- and PMA-induced differentiation, and reveal several characteristic TF interactions for E and MK differentiation that confirm regulatory mechanisms documented in the literature. Additionally, we highlight several novel TF interactions at various stages of E and MK differentiation. Furthermore, we investigated the mechanism by which nicotinamide (NIC) promoted terminal MK maturation using an MK-committed cell line, CHRF-288-11 (CHRF). Concomitant with its enhancement of ploidy, NIC strongly enhanced the activity of three TFs with known involvement in terminal MK maturation: FLI-1, NF-E2, and p53. Dynamic profiling of TF activity represents a novel tool to complement traditional assays focused on mRNA and protein expression levels to understand progenitor cell differentiation.
机译:MK-E祖细胞(MEP)对红系(E)或巨核细胞(MK)系的定向分化可以增强红细胞和血小板的离体生成,以进行治疗性输血。 MEP分叉处的谱系选择很大程度上受细胞内信号转导网络内的活性控制,其活动决定了转录因子(TFs)的活性并最终决定了基因表达。尽管牵涉到许多TF,但E或MK分化是一个复杂的过程,需要几天的时间,而且在承诺和最终成熟过程中TF活动的动态性还相对未得到开发。在这里,我们将活细胞阵列用于MEP分叉过程中TF活动的大规模,动态量化。在双能K562细胞的E和MK分化过程中表征了一组造血TF(GATA-1,GATA-2,SCL / TAL1,FLI-1,NF-E2,PU.1,c-Myb)。确定了与每个谱系分化相关的动态TF活动图谱,并通过先前的报告进行了验证。从这些活动概况,我们表明GATA-1是早期的人血红素和PMA诱导的分化过程中的重要枢纽,并揭示了E和MK分化的几个特征性TF相互作用,证实了文献中记载的调节机制。此外,我们重点介绍了E和MK分化各个阶段的几种新型TF相互作用。此外,我们研究了使用MK承诺的细胞系CHRF-288-11(CHRF)烟酰胺(NIC)促进末端MK成熟的机制。 NIC与倍性的增强相结合,极大地增强了三种已知参与终末MK成熟的TF的活性:FLI-1,NF-E2和p53。 TF活性的动态分析代表了一种新颖的工具,可补充专注于mRNA和蛋白质表达水平以了解祖细胞分化的传统检测方法。

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