Miyake Koich, Utsugisawa Taiju, Flygare Johan, Kiefer Thomas, Hamaguchi Isao, Richter Johan, Karlsson Stefan
Molecular Medicine and Gene Therapy, Lund University, BMC A12, 221 84, Lund, Sweden.
Stem Cells. 2008 Feb;26(2):323-9. doi: 10.1634/stemcells.2007-0569. Epub 2007 Oct 25.
Diamond-Blackfan anemia (DBA) is a congenital red-cell aplasia in which 25% of the patients have a mutation in the ribosomal protein (RP) S19 gene. It is not known how the RPS19 deficiency impairs erythropoiesis and proliferation of hematopoietic progenitors. To elucidate molecular mechanisms in RPS19-deficient DBA, we analyzed the effects of RPS19 deficiency on erythropoietin (EPO)-induced signal transduction, cell cycle, and apoptosis in RPS19-deficient TF-1 cells. We did not find any abnormality in EPO-induced signal transduction. However, RPS19-deficient TF-1 cells showed G0/G1 arrest (82% vs. 58%; p < .05) together with accumulation of p21 and p27. The fraction of apoptotic cells detected by Annexin V analysis also increased compared with control cells (13% vs. 3.1%; p < .05). Western blot analysis of apoptosis-related proteins showed that the level of bcl-2 and Bad was decreased and Bax was increased in RPS19-deficient TF-1 cells. Moreover, primary CD34-positive cells from DBA patients detected by Annexin V analysis also generated a higher number of apoptotic cells compared with normal CD34-positive cells during in vitro culture (38% vs. 8.9%; n = 5; p < .001). Finally, we show that although RPS19 silencing reduces EPO-induced development of erythroid progenitors expressing glycophorin A (GPA), RPS19 silencing in cells already expressing GPA does not affect GPA expression. These findings indicate that RPS19 deficiency causes apoptosis and accelerated loss of erythroid progenitors in RPS19-deficient DBA.
先天性纯红细胞再生障碍性贫血(DBA)是一种先天性红细胞生成障碍,其中25%的患者核糖体蛋白(RP)S19基因发生突变。目前尚不清楚RPS19缺陷如何损害红细胞生成和造血祖细胞的增殖。为了阐明RPS19缺陷型DBA的分子机制,我们分析了RPS19缺陷对促红细胞生成素(EPO)诱导的信号转导、细胞周期以及RPS19缺陷型TF-1细胞凋亡的影响。我们未发现EPO诱导的信号转导有任何异常。然而,RPS19缺陷型TF-1细胞出现G0/G1期阻滞(82%对58%;p<0.05),同时伴有p21和p27的积累。与对照细胞相比,通过膜联蛋白V分析检测到的凋亡细胞比例也增加了(13%对3.1%;p<0.05)。凋亡相关蛋白的蛋白质印迹分析表明,RPS19缺陷型TF-1细胞中bcl-2和Bad的水平降低,而Bax增加。此外,通过膜联蛋白V分析检测,DBA患者的原代CD34阳性细胞在体外培养期间与正常CD34阳性细胞相比也产生了更多的凋亡细胞(38%对8.9%;n=5;p<0.001)。最后,我们表明,虽然RPS19沉默减少了EPO诱导的表达血型糖蛋白A(GPA)的红系祖细胞的发育,但在已经表达GPA的细胞中RPS19沉默并不影响GPA表达。这些发现表明,RPS19缺陷导致RPS19缺陷型DBA中红系祖细胞凋亡和加速丢失。