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Lineages, cell types and functional states: a genomic view

机译:谱系,细胞类型和功能状态:基因组视图

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Cellular differentiation progresses through an ordered cascade of events involving cell autonomous and micro-environment regulated expression or activation of transcription factors (TFs). Lineage-determining and stimulus-activated TFs collaborate in specifying the transcriptional programs of differentiating cells through the establishment of appropriate genomic repertoires of active or poised cis-regulatory elements, which can eventually be altered by environmental changes to generate transient or persistent functional states. Here, we rationalize available genomic and functional data into a mechanistic model whereby terminal differentiation proceeds first through the establishment of a regulatory landscape that is broadly shared among all cell types within a given lineage; and then through the selective activation of a more restricted set of regulatory elements that specify the unique transcriptional outputs of individual cell types. In this scheme, the interplay between cell-autonomous and microenvironment-regulated TFs is highly complex, with several documented variants.
机译:细胞分化通过涉及细胞自主和微环境调节的表达或转录因子(TFs)激活的事件的有序级联进行。沿袭确定和刺激激活的TF通过建立适当的活性或平衡的顺式调控元件基因组库来共同合作,共同确定分化细胞的转录程序,这些环境最终可能会因环境变化而改变,从而产生瞬时或持久的功能状态。在这里,我们将可用的基因组和功能数据合理化为一个机械模型,从而通过建立在给定谱系内所有细胞类型之间广泛共享的调控格局,首先进行终末分化。然后通过选择性激活一组限制性更强的调节元件来指定单个细胞类型的独特转录输出。在这种方案中,细胞自治和微环境调节的TF之间的相互作用是非常复杂的,有多种文献记载的变体。

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