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Mice lacking the sodium-dependent phosphate import protein PiT1 (SLC20A1) have a severe defect in terminal erythroid differentiation and early B cell development

机译:缺乏钠依赖性磷酸进口蛋白质的小鼠pIT1(sLC20a1)具有在终端红细胞分化和早期B细胞发育严重缺陷

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摘要

Phosphate is critical in multiple biological processes (phosphorylation reactions, ATP production, and DNA structure and synthesis). It remains unclear how individual cells initially sense changes in phosphate availability and the cellular consequences of these changes. PiT1 (or SLC20A1) is a constitutively expressed, high-affinity sodium-dependent phosphate import protein. In vitro data suggest that PiT1 serves a direct role in mediating cellular proliferation; its role in vivo is unclear. We have discovered that mice lacking PiT1 develop a profound underproduction anemia characterized by mild macrocytosis, dyserythropoiesis, increased apoptosis, and a near complete block in terminal erythroid differentiation. In addition, the animals are severely B cell lymphopenic because of a defect in pro–B cell development and mildly neutropenic. The phenotype is intrinsic to the hematopoietic system, is associated with a defect in cell cycle progression, and occurs in the absence of changes in serum phosphate or calcium concentrations and independently of a change in cellular phosphate uptake. The severity of the anemia and block in terminal erythroid differentiation and B cell lympho-penia are striking and suggest that PiT1 serves a fundamental and nonredundant role in murine terminal erythroid differentiation and B cell development. Intriguingly, as the anemia mimics the ineffective erythropoiesis in some low-grade human myelodysplastic syndromes, this murine model might also provide pathologic insight into these disorders.
机译:磷酸盐在多种生物学过程(磷酸化反应,ATP产生以及DNA结构和合成)中至关重要。尚不清楚单个细胞最初如何感知磷酸盐可用性的变化以及这些变化的细胞后果。 PiT1(或SLC20A1)是一种组成型表达的,高亲和力的钠依赖性磷酸酯输入蛋白。体外数据表明,PiT1在介导细胞增殖中起直接作用。其在体内的作用尚不清楚。我们已经发现,缺少PiT1的小鼠会发生严重的生产不足性贫血,其特征是轻度巨细胞增多,促红细胞生成异常,细胞凋亡增加以及晚期红系分化几乎完全受阻。此外,由于pro-B细胞发育缺陷和轻度中性粒细胞减少,这些动物严重B细胞淋巴细胞减少。该表型是造血系统固有的,与细胞周期进程中的缺陷有关,并且在血清磷酸盐或钙浓度无变化且与细胞磷酸盐摄取变化无关的情况下发生。贫血的严重程度和终末红细胞分化和B细胞淋巴性肾炎的阻滞是惊人的,表明PiT1在鼠终末红细胞分化和B细胞发育中起着基本和非冗余的作用。有趣的是,由于贫血模仿了某些低度的人类骨髓增生异常综合症中无效的红细胞生成,因此这种小鼠模型也可能为这些疾病提供病理学见识。

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