Whitehead Institute for Biomedical Research, Cambridge, MA, USA.
Br J Haematol. 2010 Feb;148(4):611-22. doi: 10.1111/j.1365-2141.2009.07993.x. Epub 2009 Dec 1.
Diamond Blackfan anaemia (DBA) is a severe congenital failure of erythropoiesis. Despite mutations in one of several ribosome protein genes, including RPS19, the cause of the erythroid specificity is still a mystery. We hypothesized that, because the chromatin of late erythroid cells becomes condensed and transcriptionally inactive prior to enucleation, the rapidly proliferating immature cells require very high ribosome synthetic rates. RNA biogenesis was measured in primary mouse fetal liver erythroid progenitor cells; during the first 24 h, cell number increased three to fourfold while, remarkably, RNA content increased sixfold, suggesting an accumulation of an excess of ribosomes during early erythropoiesis. Retrovirus infected siRNA RPS19 knockdown cells showed reduced proliferation but normal differentiation, and cell cycle analysis showed a G1/S phase delay. p53 protein was increased in the knockdown cells, and the mRNA level for p21, a transcriptional target of p53, was increased. Furthermore, we show that RPS19 knockdown decreased MYB protein, and Kit mRNA was reduced, as was the amount of cell surface KIT protein. Thus, in this small hairpin RNA murine model of DBA, RPS19 insufficient erythroid cells may proliferate poorly because of p53-mediated cell cycle arrest, and also because of decreased expression of the key erythroid signalling protein KIT.
Diamond Blackfan 贫血(DBA)是一种严重的先天性红细胞生成障碍。尽管核糖体蛋白基因(包括 RPS19)之一发生突变,但红细胞特异性的原因仍然是个谜。我们假设,由于晚期红细胞的染色质在去核前变得浓缩和转录失活,因此快速增殖的未成熟细胞需要非常高的核糖体合成速率。我们在原代小鼠胎肝红系祖细胞中测量了 RNA 生物发生;在最初的 24 小时内,细胞数量增加了三到四倍,而令人惊讶的是,RNA 含量增加了六倍,这表明在早期红细胞生成过程中积累了过量的核糖体。逆转录病毒感染的 siRNA RPS19 敲低细胞显示增殖减少但分化正常,细胞周期分析显示 G1/S 期延迟。敲低细胞中的 p53 蛋白增加,p53 的转录靶标 p21 的 mRNA 水平增加。此外,我们还表明,RPS19 敲低降低了 MYB 蛋白,Kit mRNA 减少,细胞表面 KIT 蛋白减少。因此,在这个 DBA 的小发夹 RNA 鼠模型中,RPS19 不足的红细胞可能由于 p53 介导的细胞周期停滞而增殖不良,并且由于关键的红细胞信号蛋白 KIT 的表达减少也是如此。