Dong Cheng-Ya, Liu Xiao-Yan, Wang Nan, Wang Li-Na, Yang Bin-Xia, Ren Qian, Liang Hao-Yue, Ma Xiao-Tong
State Key Laboratory of Experimental Hematology, Institute of Hematology and Blood Diseases Hospital, Chinese Academy of Medical Sciences, Peking Union Medical College, Tianjin, People's Republic of China.
Stem Cells. 2014 Dec;32(12):3173-82. doi: 10.1002/stem.1803.
Transcription factor Twist-1 plays essential roles in specification and differentiation of mesoderm-derived tissues. Growing evidences now link Twist-1 to the acquisition of stem-cell-like properties. However, the role of Twist-1 in hematopoietic stem cell (HSC) remains largely uncharacterized. We report that Twist-1 is more highly expressed in murine HSC and its expression declines with differentiation. To investigate Twist-1 gene function, retroviral-mediated overexpression or removal experiments are performed. Competitive repopulation studies demonstrate that enforced expression of Twist-1 in HSC-enriched Lin(-) c-Kit(+) Sca-1(+) (LKS) cells results in an increase in the size of the G(0) population, and in their reconstitution ability after the first and a second transplantation. Conversely, removal of Twist-1 in LKS cells impairs their ability to repopulate. In addition, increased Twist-1 expression causes a shift toward production of myeloid cells. Twist-1 transduction in LKS cells activates myeloid lineage-determining factors PU.1 and GATA-1 and downregulates lymphoid factor GATA-3 in vitro, suggesting that Twist-1-mediated myeloid skewing occurs in hematopoietic stem and progenitor cells (HSPCs). These findings indicate that Twist-1 is not only involved in the maintenance of HSC dormancy and self-renewal capacity but also implicated in the myeloid lineage fate choice of HSPCs. Exploration of the underlying mechanisms reveals that Runx1/c-Mpl/Tie2 regulatory pathway could possibly account for the observed effects caused by Twist-1 overexpression. Our study provides the first evidence supporting a role for Twist-1 in hematopoiesis.
转录因子Twist-1在中胚层来源组织的特化和分化过程中发挥着重要作用。越来越多的证据表明Twist-1与干细胞样特性的获得有关。然而,Twist-1在造血干细胞(HSC)中的作用在很大程度上仍未明确。我们报道,Twist-1在小鼠造血干细胞中表达更高,并且其表达随着分化而下降。为了研究Twist-1基因的功能,我们进行了逆转录病毒介导的过表达或敲除实验。竞争性再增殖研究表明,在富含造血干细胞的Lin(-) c-Kit(+) Sca-1(+)(LKS)细胞中强制表达Twist-1会导致G(0)期细胞群体大小增加,以及在首次和第二次移植后的再构建能力增强。相反,敲除LKS细胞中的Twist-1会损害它们的再增殖能力。此外,Twist-1表达的增加导致髓系细胞生成的偏向。在LKS细胞中转导Twist-1会在体外激活髓系谱系决定因子PU.1和GATA-1,并下调淋巴系因子GATA-3,这表明Twist-1介导的髓系偏向发生在造血干细胞和祖细胞(HSPCs)中。这些发现表明,Twist-1不仅参与造血干细胞休眠和自我更新能力的维持,还与造血干细胞和祖细胞的髓系谱系命运选择有关。对潜在机制的探索表明,Runx1/c-Mpl/Tie2调节通路可能是Twist-1过表达所观察到的效应的原因。我们的研究提供了首个支持Twist-1在造血过程中发挥作用的证据。