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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >The ribosome-related protein, SBDS, is critical for normal erythropoiesis.
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The ribosome-related protein, SBDS, is critical for normal erythropoiesis.

机译:核糖体相关蛋白SBDS对正常的红细胞生成至关重要。

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摘要

Although anemia is common in Shwachman- Diamond syndrome (SDS), the underlying mechanism remains unclear. We asked whether SBDS, which is mutated in most SDS patients, is critical for erythroid development. We found that SBDS expression is high early during erythroid differentiation. Inhibition of SBDS in CD34(+) hematopoietic stem cells and early progenitors (HSC/Ps) and K562 cells led to slow cell expansion during erythroid differentiation. Induction of erythroid differentiation resulted in markedly accelerated apoptosis in the knockdown cells; however, proliferation was only mildly reduced. The percentage of cells entering differentiation was not reduced. Differentiation also increased the oxidative stress in SBDS-knockdown K562 cells, and antioxidants enhanced the expansion capability of differentiating SBDS-knockdown K562 cells and colony production of SDS patient HSC/Ps. Erythroid differentiation also resulted in reduction of all ribosomal subunits and global translation. Furthermore, stimulation of global translation with leucine improved the erythroid cell expansion of SBDS-knockdown cells and colony production of SDS patient HSC/Ps. Leucine did not reduce the oxidative stress in SBDS-deficient K562 cells. These results demonstrate that SBDS is critical for normal erythropoiesis. Erythropoietic failure caused by SBDS deficiency is at least in part related to elevated ROS levels and translation insufficiency because antioxidants and leucine improved cell expansion.
机译:尽管贫血在Shwachman-Diamond综合征(SDS)中很常见,但其潜在机制仍不清楚。我们询问在大多数SDS患者中发生突变的SBDS是否对红系发育至关重要。我们发现在红系分化的早期SBDS表达很高。 SBDS在CD34(+)造血干细胞和早期祖细胞(HSC / Ps)和K562细胞中的抑制作用导致红系分化过程中缓慢的细胞扩增。红细胞分化的诱导导致敲低细胞的细胞凋亡明显加快。但是,增殖仅轻微降低。进入分化的细胞百分比没有减少。分化还增加了SBDS-knockdown K562细胞的氧化应激,抗氧化剂增强了分化SBDS-knockdown K562细胞的扩增能力和SDS患者HSC / Ps的集落产生。红系分化还导致所有核糖体亚基的减少和整体翻译。此外,亮氨酸刺激的整体翻译改善了SBDS击倒细胞的红系细胞扩张和SDS患者HSC / Ps的集落产生。亮氨酸不能降低SBDS缺陷型K562细胞的氧化应激。这些结果表明SBDS对于正常的红细胞生成至关重要。 SBDS缺乏引起的红细胞生成衰竭至少部分与ROS水平升高和翻译功能不全有关,因为抗氧化剂和亮氨酸可改善细胞扩增。

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