Université de Paris, Unité Mixte de Recherche (UMR) S1134, Biologie Intégrée du Globule Rouge, INSERM, Paris, France.
Centre National de Référence pour les Groupes Sanguins (CNRGS), Institut National de la Transfusion Sanguine, Paris, France.
Blood. 2021 Jun 24;137(25):3548-3562. doi: 10.1182/blood.2020007281.
The tight regulation of intracellular nucleotides is critical for the self-renewal and lineage specification of hematopoietic stem cells (HSCs). Nucleosides are major metabolite precursors for nucleotide biosynthesis and their availability in HSCs is dependent on their transport through specific membrane transporters. However, the role of nucleoside transporters in the differentiation of HSCs to the erythroid lineage and in red cell biology remains to be fully defined. Here, we show that the absence of the equilibrative nucleoside transporter (ENT1) in human red blood cells with a rare Augustine-null blood type is associated with macrocytosis, anisopoikilocytosis, an abnormal nucleotide metabolome, and deregulated protein phosphorylation. A specific role for ENT1 in human erythropoiesis was demonstrated by a defective erythropoiesis of human CD34+ progenitors following short hairpin RNA-mediated knockdown of ENT1. Furthermore, genetic deletion of ENT1 in mice was associated with reduced erythroid progenitors in the bone marrow, anemia, and macrocytosis. Mechanistically, we found that ENT1-mediated adenosine transport is critical for cyclic adenosine monophosphate homeostasis and the regulation of erythroid transcription factors. Notably, genetic investigation of 2 ENT1null individuals demonstrated a compensation by a loss-of-function variant in the ABCC4 cyclic nucleotide exporter. Indeed, pharmacological inhibition of ABCC4 in Ent1-/- mice rescued erythropoiesis. Overall, our results highlight the importance of ENT1-mediated nucleotide metabolism in erythropoiesis.
细胞内核苷酸的严格调节对于造血干细胞(HSCs)的自我更新和谱系特化至关重要。核苷是核苷酸生物合成的主要代谢前体,其在 HSCs 中的可用性取决于它们通过特定膜转运蛋白的运输。然而,核苷转运体在 HSCs 向红细胞谱系分化以及在红细胞生物学中的作用仍有待充分定义。在这里,我们表明在具有罕见 Augustine 缺失血型的人类红细胞中缺乏平衡核苷转运体(ENT1)与巨红细胞症、异形红细胞症、异常核苷酸代谢组和蛋白磷酸化失调有关。通过短发夹 RNA 介导的 ENT1 敲低后,人类 CD34+祖细胞的红细胞生成出现缺陷,证明了 ENT1 在人类红细胞生成中的特定作用。此外,在小鼠中敲除 ENT1 与骨髓中红细胞祖细胞减少、贫血和巨红细胞症有关。从机制上讲,我们发现 ENT1 介导的腺苷转运对于环腺苷单磷酸稳态和红细胞转录因子的调节至关重要。值得注意的是,对 2 名 ENT1null 个体的遗传研究表明,ABCC4 环核苷酸外排器的功能丧失变体存在代偿作用。事实上,在 Ent1-/- 小鼠中抑制 ABCC4 的药理学抑制挽救了红细胞生成。总体而言,我们的研究结果强调了 ENT1 介导的核苷酸代谢在红细胞生成中的重要性。