Silva M, Grillot D, Benito A, Richard C, Nuñez G, Fernández-Luna J L
Servicio de Inmunologia, Hospital Universitario Marques de Valdecilla, Santander, Spain.
Blood. 1996 Sep 1;88(5):1576-82.
Erythropoietin (Epo), the hormone that is the principal regulator of red blood cell production, interacts with high-affinity receptors on the surface of erythroid progenitor cells and maintains their survival. Epo has been shown to promote cell viability by repressing apoptosis; however, the molecular mechanism involved is unclear. In the present studies we have examined whether Epo acts as a survival factor through the regulation of the bcl-2 family of apoptosis-regulatory genes. We addressed this issue in HCD-57, a murine erythroid progenitor cell line that requires Epo for proliferation and survival. When HCD-57 cells were cultured in the absence of Epo, Bcl-2 and Bcl-XL but not Bax were downregulated, and the cells underwent apoptotic cell death. HCD-57 cells infected with a retroviral vector encoding human Bcl-XL or Bcl-2 rapidly stopped proliferating but remained viable in the absence of Epo. Furthermore, endogenous levels of bcl-2 and bcl-XL were downregulated after Epo withdrawal in HCD-57 cells that remained viable through ectopic expression of human Bcl-XL, further indicating that Epo specifically maintains the expression of bcl-2 and bcl-XL. We also show that HCD-57 rescued from apoptosis by ectopic expression of Bcl-XL can undergo erythroid differentiation in the absence of Epo, demonstrating that a survival signal but not Epo itself is necessary for erythroid differentiation of HCD-57 progenitor cells. Thus, we propose a model whereby Epo functions as a survival factor by repressing apoptosis through Bcl-XL and Bcl-2 during proliferation and differentiation of erythroid progenitors.
促红细胞生成素(Epo)是红细胞生成的主要调节激素,它与红系祖细胞表面的高亲和力受体相互作用并维持其存活。Epo已被证明可通过抑制凋亡来促进细胞活力;然而,其中涉及的分子机制尚不清楚。在本研究中,我们研究了Epo是否通过调节凋亡调节基因的bcl - 2家族来作为一种存活因子。我们在HCD - 57中解决了这个问题,HCD - 57是一种小鼠红系祖细胞系,其增殖和存活需要Epo。当HCD - 57细胞在无Epo的情况下培养时,Bcl - 2和Bcl - XL下调,但Bax未下调,细胞发生凋亡性细胞死亡。用编码人Bcl - XL或Bcl - 2的逆转录病毒载体感染的HCD - 57细胞迅速停止增殖,但在无Epo的情况下仍保持存活。此外,在通过人Bcl - XL的异位表达而保持存活的HCD - 57细胞中,Epo撤除后bcl - 2和bcl - XL的内源性水平下调,进一步表明Epo特异性地维持bcl - 2和bcl - XL的表达。我们还表明,通过Bcl - XL的异位表达从凋亡中拯救出来的HCD - 57细胞可以在无Epo的情况下进行红系分化,这表明存活信号而非Epo本身是HCD - 57祖细胞红系分化所必需的。因此,我们提出了一个模型,即Epo在红系祖细胞的增殖和分化过程中通过Bcl - XL和Bcl - 2抑制凋亡来作为一种存活因子。