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体外多能造血祖细胞自我更新、分化和谱系选择的分子特征

Molecular signatures of self-renewal, differentiation, and lineage choice in multipotential hemopoietic progenitor cells in vitro.

作者信息

Bruno Ludovica, Hoffmann Reinhard, McBlane Fraser, Brown John, Gupta Rajeev, Joshi Chirag, Pearson Stella, Seidl Thomas, Heyworth Clare, Enver Tariq

机构信息

Section of Gene Function and Regulation, The Institute of Cancer Research, London SW3 6JB, UK.

出版信息

Mol Cell Biol. 2004 Jan;24(2):741-56. doi: 10.1128/MCB.24.2.741-756.2004.

Abstract

The molecular mechanisms governing self-renewal, differentiation, and lineage specification remain unknown. Transcriptional profiling is likely to provide insight into these processes but, as yet, has been confined to "static" molecular profiles of stem and progenitors cells. We now provide a comprehensive, statistically robust, and "dynamic" analysis of multipotent hemopoietic progenitor cells undergoing self-renewal in response to interleukin-3 (IL-3) and multilineage differentiation in response to lineage-affiliated cytokines. Cells undergoing IL-3-dependent proliferative self-renewal displayed striking complexity, including expression of genes associated with different lineage programs, suggesting a highly responsive compartment poised to rapidly execute intrinsically or extrinsically initiated cell fate decisions. A remarkable general feature of early differentiation was a resolution of complexity through the downregulation of gene expression. Although effector genes characteristic of mature cells were upregulated late, coincident with morphological changes, lineage-specific changes in gene expression were observed prior to this, identifying genes which may provide early harbingers of unilineage commitment. Of particular interest were genes that displayed differential behavior irrespective of the lineage elaborated, many of which were rapidly downregulated within 4 to 8 h after exposure to a differentiation cue. These are likely to include genes important in self-renewal, the maintenance of multipotentiality, or the negative regulation of differentiation per se.

摘要

调控自我更新、分化和谱系特化的分子机制仍不清楚。转录谱分析可能会为这些过程提供深入见解,但目前仅限于对干细胞和祖细胞的“静态”分子谱分析。我们现在提供了一项全面、统计稳健且“动态”的分析,对象是多能造血祖细胞,这些细胞在白细胞介素-3(IL-3)刺激下进行自我更新,并在谱系相关细胞因子刺激下进行多谱系分化。经历依赖IL-3的增殖性自我更新的细胞表现出惊人的复杂性,包括与不同谱系程序相关的基因表达,这表明存在一个高度敏感的细胞区室,随时准备快速执行内在或外在启动的细胞命运决定。早期分化的一个显著普遍特征是通过基因表达下调来解决复杂性。尽管成熟细胞特有的效应基因在后期上调,与形态变化同时发生,但在此之前就观察到了基因表达的谱系特异性变化,确定了可能是单谱系定向早期预兆的基因。特别有趣的是那些无论分化出何种谱系都表现出不同行为的基因,其中许多基因在暴露于分化信号后4至8小时内迅速下调。这些基因可能包括在自我更新、多能性维持或分化本身的负调控中起重要作用的基因。

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