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Bcl11b and combinatorial resolution of cell fate in the T-cell gene regulatory network

机译:Bcl11b和T细胞基因调控网络中细胞命运的组合解析

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摘要

T-cell development from hematopoietic progenitors depends on multiple transcription factors, mobilized and modulated by intrathymic Notch signaling. Key aspects of T-cell specification network architecture have been illuminated through recent reports defining roles of transcription factors PU.1, GATA-3, and E2A, their interactions with Notch signaling, and roles of Runx1, TCF-1, and Hes1, providing bases for a comprehensively updated model of the T-cell specification gene regulatory network presented herein. However, the role of lineage commitment factor Bcl11b has been unclear. We use self-organizing maps on 63 RNA-seq datasets from normal and perturbed T-cell development to identify functional targets of Bcl11b during commitment and relate them to other regulomes. We show that both activation and repression target genes can be bound by Bcl11b in vivo, and that Bcl11b effects overlap with E2A-dependent effects. The newly clarified role of Bcl11b distinguishes discrete components of commitment, resolving how innate lymphoid, myeloid, and dendritic, and B-cell fate alternatives are excluded by different mechanisms.
机译:造血祖细胞的T细胞发育取决于胸腺内Notch信号动员和调节的多种转录因子。最近的报告定义了转录因子PU.1,GATA-3和E2A的作用,它们与Notch信号的相互作用以及Runx1,TCF-1和Hes1的作用,从而阐明了T细胞规范网络体系结构的关键方面。本文所述的T细胞规范基因调控网络的全面更新模型的基础。但是,沿袭承诺因子Bcl11b的作用尚不清楚。我们使用来自正常和扰动的T细胞发育的63个RNA-seq数据集上的自组织图来确定承诺过程中Bcl11b的功能靶标并将它们与其他调节相关。我们显示,激活和抑制目标基因都可以在体内被Bcl11b结合,并且Bcl11b的作用与E2A依赖的作用重叠。 Bcl11b新近阐明的作用区分了承诺的离散组成部分,解决了先天性淋巴样,髓样和树突状以及B细胞命运的替代方式如何被不同的机制所排除。

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