Marshall Caroline J, Sinclair Joanna C, Thrasher Adrian J, Kinnon Christine
Molecular Immunology Unit, UCL Institute of Child Health, London, UK.
Br J Haematol. 2007 Oct;139(2):321-30. doi: 10.1111/j.1365-2141.2007.06795.x.
The transforming growth factor-beta-related factor bone morphogenetic protein 4 (BMP4) is expressed in the human embryonic aorta-gonad-mesonephros (AGM) coincident with the emergence of haematopoietic cells and influences postnatal mammalian haematopoietic stem cells in vitro. To investigate the role of BMP4 in mammalian embryonic haematopoiesis, cells were isolated from murine AGM and two populations of CD34(+) cells with different levels of c-Kit expression and multipotency were identified. CD34(+)/c-Kit(high) cells express CD45 and are haematopoietic-restricted progenitors. In contrast, CD34(+)/c-Kit(low) cells are Flk1+/CD45(neg) and generate adherent colonies in ex vivo culture that resemble haemangioblast colonies identified in other systems. The addition of BMP4 to AGM cells resulted in expansion of the CD34(+)/c-Kit(low) cell pool within 48 h, via a combination of down modulation of the c-Kit receptor in CD34(+)/c-Kit(high) cells and proliferation. In long-term culture, BMP4 increased the growth/survival of CD34(+)/c-Kit(high) haematopoietic progenitors, effects that were blocked by BMP inhibitors. CD34(+)/c-Kit(high) progenitors cultured with BMP4 also generated adherent colonies typical of c-Kit(low) cells. These results suggest that BMP4 regulates c-Kit expression and differentiation potential in CD34(+) AGM cells and supports a role for BMP signalling in the maintenance of multipotency during embryonic haematopoiesis, providing an insight into stem cell homeostasis within the mammalian haematopoietic niche.
转化生长因子-β相关因子骨形态发生蛋白4(BMP4)在人类胚胎主动脉-性腺-中肾(AGM)中表达,与造血细胞的出现同时发生,并且在体外影响出生后哺乳动物造血干细胞。为了研究BMP4在哺乳动物胚胎造血中的作用,从小鼠AGM中分离细胞,并鉴定出具有不同c-Kit表达水平和多能性的两个CD34(+)细胞群体。CD34(+)/c-Kit(高)细胞表达CD45,是造血受限祖细胞。相比之下,CD34(+)/c-Kit(低)细胞是Flk1+/CD45(阴性),并在体外培养中产生贴壁集落,类似于在其他系统中鉴定出的成血管细胞集落。向AGM细胞中添加BMP4导致48小时内CD34(+)/c-Kit(低)细胞池的扩增,这是通过下调CD34(+)/c-Kit(高)细胞中的c-Kit受体和增殖实现的。在长期培养中,BMP4增加了CD34(+)/c-Kit(高)造血祖细胞的生长/存活,这些作用被BMP抑制剂阻断。用BMP4培养的CD34(+)/c-Kit(高)祖细胞也产生了c-Kit(低)细胞典型的贴壁集落。这些结果表明,BMP4调节CD34(+)AGM细胞中的c-Kit表达和分化潜能,并支持BMP信号在胚胎造血过程中维持多能性的作用,为深入了解哺乳动物造血微环境中的干细胞稳态提供了线索。