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Plenary Paper: Haploinsufficiency for ribosomal protein genes causes selective activation of p53 in human erythroid progenitor cells

机译:全体会议:核糖体蛋白基因的单倍不足会导致人类红系祖细胞中p53的选择性激活

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摘要

Haploinsufficiency for ribosomal protein genes has been implicated in the pathophysiology of Diamond-Blackfan anemia (DBA) and the 5q− syndrome, a subtype of myelodysplastic syndrome. The p53 pathway is activated by ribosome dysfunction, but the molecular basis for selective impairment of the erythroid lineage in disorders of ribosome function has not been determined. We found that p53 accumulates selectively in the erythroid lineage in primary human hematopoietic progenitor cells after expression of shRNAs targeting RPS14, the ribosomal protein gene deleted in the 5q− syndrome, or RPS19, the most commonly mutated gene in DBA. Induction of p53 led to lineage-specific accumulation of p21 and consequent cell cycle arrest in erythroid progenitor cells. Pharmacologic inhibition of p53 rescued the erythroid defect, whereas nutlin-3, a compound that activates p53 through inhibition of HDM2, selectively impaired erythropoiesis. In bone marrow biopsies from patients with DBA or del(5q) myelodysplastic syndrome, we found an accumulation of nuclear p53 staining in erythroid progenitor cells that was not present in control samples. Our findings indicate that the erythroid lineage has a low threshold for the induction of p53, providing a basis for the failure of erythropoiesis in the 5q− syndrome, DBA, and perhaps other bone marrow failure syndromes.
机译:核糖体蛋白基因的单倍剂量不足与钻石-Blackfan贫血(DBA)和5q-综合征(一种骨髓增生异常综合征的亚型)的病理生理学有关。 p53途径是由核糖体功能障碍激活的,但尚未确定核糖体功能障碍中红系谱系选择性损伤的分子基础。我们发现在靶向RPS14的shRNA表达后,p53选择性地积累在原代人造血祖细胞的红系谱系中,RPS14是5q-综合征中缺失的核糖体蛋白基因,或RPS19,是DBA中最常见的突变基因。 p53的诱导导致p21的谱系特异性积累和随后的细胞周期停滞在红系祖细胞中。对p53的药理抑制可以挽救红系缺陷,而通过抑制HDM2激活p53的化合物nutlin-3则选择性地损害了红细胞生成。在来自DBA或del(5q)骨髓增生异常综合症患者的骨髓活检中,我们发现在对照样品中不存在的类红细胞祖细胞中积累了p53核染色。我们的发现表明,类红细胞谱系的p53诱导阈值较低,为5q-综合征,DBA以及其他骨髓衰竭综合征中的红细胞生成失败提供了依据。

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