首页> 美国卫生研究院文献>The EMBO Journal >Expression of the LIM-homeobox gene LH2 generates immortalized steel factor-dependent multipotent hematopoietic precursors.
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Expression of the LIM-homeobox gene LH2 generates immortalized steel factor-dependent multipotent hematopoietic precursors.

机译:LIM-同源盒基因LH2的表达产生永生的钢因子依赖性多能造血前体。

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摘要

The genes controlling self-renewal and differentiation in the hematopoietic system are largely unknown. The LIM-homeobox genes are known to be important for asymmetric cell divisions and differentiation of specific cell types and organs. One member of this family, LH2, is expressed in fetal liver at the time of active hematopoiesis. Therefore, we have assessed the function of LH2 during the formation and initial expansion of the hematopoietic system by differentiating LH2-transduced embryonic stem (ES) cells in vitro. This procedure generated multipotent hematopoietic precursor cell (HPC) lines that required Steel factor for growth. HPC lines have been maintained in an undifferentiated state in culture for >7 months. Other growth factors tested efficiently induce terminal differentiation of HPCs into various mature myeloid lineages. Steel factor is also required and acts synergistically with the other growth factors to generate multilineage colonies from the HPCs. These HPC lines express transcription factors that are consistent with an immature progenitor, and the pattern of cell surface marker expression is similar to that of early fetal multipotent hematopoietic progenitors. Collectively, these data suggest that the HPC lines represent an early fetal multipotent hematopoietic progenitor, and suggest a role for LH2 in the control of cell fate decision and/or proliferation in the hematopoietic system.
机译:在造血系统中控制自我更新和分化的基因在很大程度上是未知的。已知LIM-同源盒基因对于不对称细胞分裂以及特定细胞类型和器官的分化非常重要。该家族中的一个成员LH2在活跃的造血过程中在胎儿肝脏中表达。因此,我们通过在体外分化LH2转导的胚胎干(ES)细胞来评估LH2在造血系统形成和初始扩增过程中的功能。该程序产生了需要钢因子生长的多能造血前体细胞(HPC)系。 HPC品系在培养中一直保持未分化状态> 7个月。测试的其他生长因子可有效诱导HPC最终分化为各种成熟的髓系。还需要钢因子,并与其他生长因子协同作用,以从HPC产生多谱系菌落。这些HPC系表达与未成熟祖细胞一致的转录因子,并且细胞表面标志物的表达模式与早期胎儿多能造血祖细胞的表达模式相似。总体而言,这些数据表明,HPC系代表了早期胎儿多能造血祖细胞,并暗示了LH2在控制造血系统中细胞命运决定和/或增殖中的作用。

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