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Densely interconnected transcriptional circuits control cell states in human hematopoiesis

机译:密集互连的转录回路控制人类造血细胞的状态

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Though many individual transcription factors are known to regulate hematopoietic differentiation, major aspects of the global architecture of hematopoiesis remain unknown. Here, we profiled gene expression in 38 distinct purified populations of human hematopoietic cells and used probabilistic models of gene expression and analysis of cis-elements in gene promoters to decipher the general organization of their regulatory circuitry. We identified modules of highly coexpressed genes, some of which are restricted to a single lineage but most of which are expressed at variable levels across multiple lineages. We found densely interconnected cis-regulatory circuits and a large number of transcription factors that are differentially expressed across hematopoietic states. These findings suggest a more complex regulatory system for hematopoiesis than previously assumed.
机译:尽管已知许多个体转录因子可调节造血分化,但造血系统整体结构的主要方面仍然未知。在这里,我们分析了人类造血细胞的38个不同的纯化群体中的基因表达,并使用了基因表达的概率模型和基因启动子中顺式元素的分析来解释其调控电路的一般组织。我们鉴定了高度共表达的基因模块,其中一些限于单个谱系,但大多数在多个谱系中以可变水平表达。我们发现密集互连的顺式调节电路和大量转录因子在造血状态之间差异表达。这些发现表明造血系统的调控系统比以前设想的更为复杂。

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