Negre Olivier, Fusil Floriane, Henri Annie, Villette Jean-Marie, Leboulch Philippe, Beuzard Yves, Payen Emmanuel
INSERM, Laboratoire de Thérapie Génique Hématopoïétique, Paris, France.
Exp Hematol. 2008 Apr;36(4):412-23. doi: 10.1016/j.exphem.2007.12.004. Epub 2008 Mar 4.
To investigate whether expression of a membrane-anchored form of erythropoietin (MbEpo) results in self-controlled, autocrine proliferation, and differentiation of erythroid cells. This would provide a possible approach to the selective expansion of genetically corrected erythroid cells in gene-therapy protocols.
We designed retroviral vectors encoding MbEpo or secreted erythropoietin (Epo) and enhanced green fluorescent protein. Several Epo-dependent cell lines were transduced and their proliferative capacity evaluated. This approach was also assessed in human bone marrow CD34(+) cells and mouse bone marrow transplants.
Retroviral vector-mediated MbEpo expression induced autocrine proliferation of the Epo-dependent cell lines DAE7 and UT7/Epo. However, it blocked the Epo receptor (EpoR)-induced activation of granulocyte macrophage colony-stimulating factor-dependent UT7/GM cells and the erythroid differentiation of both human hematopoietic cells in vitro and of mouse bone marrow cells in transplant experiments. MbEpo was present at the surface of UT7/GM cells. It did not affect the membrane localization of the EpoR, but prevented its normal Epo-dependent phosphorylation and internalization. By contrast to these inhibitory effects, a higher rate of EpoR replenishment in UT7/GM cells before MbEpo production rendered cell proliferation independent of exogenous growth factor.
Activation of EpoR gene expression before MbEpo-induced EpoR activation is essential for activation or inhibition of growth and differentiation of Epo-dependent cell lines. It will be necessary to delay MbEpo expression in late erythroid progenitors until after EpoR gene activation, for erythroid cell expansion to be achieved in vivo.
研究膜锚定形式的促红细胞生成素(MbEpo)的表达是否会导致红系细胞的自我调控、自分泌增殖和分化。这将为基因治疗方案中基因校正的红系细胞的选择性扩增提供一种可能的方法。
我们设计了编码MbEpo或分泌型促红细胞生成素(Epo)以及增强型绿色荧光蛋白的逆转录病毒载体。转导了几种依赖Epo的细胞系,并评估了它们的增殖能力。该方法也在人骨髓CD34(+)细胞和小鼠骨髓移植中进行了评估。
逆转录病毒载体介导的MbEpo表达诱导了依赖Epo的细胞系DAE7和UT7/Epo的自分泌增殖。然而,它阻断了Epo受体(EpoR)诱导的粒细胞巨噬细胞集落刺激因子依赖的UT7/GM细胞的活化以及体外人造血细胞和移植实验中小鼠骨髓细胞的红系分化。MbEpo存在于UT7/GM细胞表面。它不影响EpoR的膜定位,但阻止了其正常的Epo依赖性磷酸化和内化。与这些抑制作用相反,在MbEpo产生之前UT7/GM细胞中较高的EpoR补充率使细胞增殖不依赖于外源性生长因子。
在MbEpo诱导EpoR激活之前激活EpoR基因表达对于依赖Epo的细胞系的生长和分化的激活或抑制至关重要。为了在体内实现红系细胞扩增,有必要将MbEpo的表达推迟到晚期红系祖细胞中EpoR基因激活之后。