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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Hepatocyte nuclear factor 1A deficiency causes hemolytic anemia in mice by altering erythrocyte sphingolipid homeostasis
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Hepatocyte nuclear factor 1A deficiency causes hemolytic anemia in mice by altering erythrocyte sphingolipid homeostasis

机译:肝细胞核因子1A缺乏通过改变红细胞鞘脂性稳态来导致小鼠中的溶血性贫血

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摘要

The hepatocyte nuclear factor (HNF) family regulates complex networks of metabolism and organ development. Human mutations in its prototypical member HNF1A cause maturity-onset diabetes of the young (MODY) type 3. In this study, we identified an important role for HNF1A in the preservation of erythrocyte membrane integrity, calcium homeostasis, and osmotic resistance through an as-yet unrecognized link of HNF1A to sphingolipid homeostasis. HNF1A(-/-) mice displayed microcytic hypochromic anemia with reticulocytosis that was partially compensated by avid extramedullary erythropoiesis at all erythroid stages in the spleen thereby excluding erythroid differentiation defects. Morphologically, HNF1A(-/-) erythrocytes resembled acanthocytes and displayed increased phosphatidylserine exposure, high intracellular calcium, and elevated osmotic fragility. Sphingolipidome analysis by mass spectrometry revealed substantial and tissue-specific sphingolipid disturbances in several tissues including erythrocytes with the accumulation of sphingosine as the most prominent common feature. All HNF1A(-/-) erythrocyte defects could be simulated by exposure of wild-type (WT) erythrocytes to sphingosine in vitro and attributed in part to sphingosine-induced suppression of the plasma-membrane Ca2+-ATPase activity. Bone marrow transplantation rescued the anemia phenotype in vivo, whereas incubation with HNF1A(-/-) plasma increased the osmotic fragility of WT erythrocytes in vitro. Our data suggest a non-cell-autonomous erythrocyte defect secondary to the sphingolipid changes caused by HNF1A deficiency. Transcriptional analysis revealed 4 important genes involved in sphingolipid metabolism to be deregulated in HNF1A deficiency: Ormdl1, sphingosine kinase-2, neutral ceramidase, and ceramide synthase-5. The considerable erythrocyte defects in murine HNF1A deficiency encourage clinical studies to explore the hematological consequences of HNF1A deficiency in human MODY3 patients.
机译:肝细胞核因子(HNF)家庭调节复杂的新陈代谢网络和器官发展。其原型构件HNF1A的人类突变导致年轻(型态度)的成熟型糖尿病患者3.在本研究中,我们确定了HNF1a在保存红细胞膜完整性,钙稳态和渗透性通过的重要作用然而,HNF1A对鞘磷脂稳态的未被识别的链接。 HNF1A( - / - )小鼠显示微细胞上肾上腺素贫血,其通过脾脏的所有红细胞序列部分补偿,从而排除红细胞分化缺陷。形态学上,HNF1a( - / - )红细胞类似于丙二屈曲,并显示出增加的磷脂酰碱暴露,高细胞内钙和升高的渗透脆性。质谱分析的鞘素脂肪组分析在包括红细胞的几种组织中揭示了几种组织特异性鞘脂疾病,其具有鞘氨醇的积累作为最突出的共同特征。所有HNF1A( - / - )红细胞缺损可以通过在体外暴露于鞘氨碱,部分地模拟野生型(WT)红细胞,并且部分地归因于鞘氨酸诱导的血浆膜Ca2 + -AtPase活性。骨髓移植在体内拯救了贫血表型,而用HNF1A( - / - )血浆孵育在体外增加WT红细胞的渗透脆性。我们的数据表明,由HNF1A缺乏引起的鞘磷脂变化中的非细胞自主红细胞缺陷。转录分析揭示了在HNF1A缺乏中造成的鞘脂代谢的4个重要基因:ORMDL1,鞘氨醇激酶-2,中性陶瓷酶和神经酰胺合酶-5。鼠HNF1A缺乏的相当大的红细胞缺陷促使临床研究探讨了人类MODY3患者HNF1A缺乏的血液学后果。

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    Univ Hosp Essen West German Heart &

    Vasc Ctr Inst Pathophysiol Hufelandstr 55 D-45122 Essen;

    Univ Hosp Essen West German Heart &

    Vasc Ctr Inst Pathophysiol Hufelandstr 55 D-45122 Essen;

    Univ Hosp Essen West German Heart &

    Vasc Ctr Inst Pathophysiol Hufelandstr 55 D-45122 Essen;

    Univ Hosp Essen West German Heart &

    Vasc Ctr Inst Pathophysiol Hufelandstr 55 D-45122 Essen;

    Univ Hosp Essen Inst Pathol Essen Germany;

    Univ Hosp Essen West German Heart &

    Vasc Ctr Inst Pathophysiol Hufelandstr 55 D-45122 Essen;

    Univ Hosp Jena Ctr Sepsis Control &

    Care Dept Anesthesiol &

    Intens Care Med Jena Germany;

    Univ Hosp Essen West German Heart &

    Vasc Ctr Inst Pathophysiol Hufelandstr 55 D-45122 Essen;

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  • 正文语种 eng
  • 中图分类 血液及淋巴系疾病;
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