首页> 外文期刊>Blood: The Journal of the American Society of Hematology >C1galt1-deficient mice exhibit thrombocytopenia due to abnormal terminal differentiation of megakaryocytes.
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C1galt1-deficient mice exhibit thrombocytopenia due to abnormal terminal differentiation of megakaryocytes.

机译:C1GALT1缺陷小鼠由于巨核细胞的异常分化而表现出血小板减少症。

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摘要

C1galt1 is essential for synthesis of the core 1 structure of mucin-type O-glycans. To clarify the physiological role of O-glycans in adult hematopoiesis, we exploited the interferon-inducible Mx1-Cre transgene to conditionally ablate the C1galt(flox) allele (Mx1-C1). Mx1-C1 mice exhibit severe thrombocytopenia, giant platelets, and prolonged bleeding times. Both the number and DNA ploidy of megakaryocytes in Mx1-C1 bone marrow were similar to those in wild-type (WT) mice. However, there were few proplatelets in Mx1-C1 primary megakaryocytes. Conversely, bone marrow transplanted from Mx1-C1 to WT and splenectomized Mx1-C1 mice gave rise to observations similar to those described above. The expression of GPIbα messenger RNA was unchanged in Mx1-C1 bone marrow, whereas flow cytometric and western blot analyses using megakaryocytes and platelets revealed that the expression of GPIbα protein was significantly reduced in Mx1-C1 mice. Moreover, circulating Mx1-C1 platelets exhibited an increase in the number of microtubule coils, despite normal levels of α- and β-tubulin. Our observations suggest that O-glycan is required for terminal megakaryocyte differentiation and platelet production and that the decrease in GPIbα in cells lacking O-glycan might be caused by increased proteolysis.
机译:C1GALT1对于合成粘蛋白型O-聚糖的核心1结构至关重要。为了阐明O-Glycans在成人血液缺陷中的生理作用,我们利用干扰素 - 诱导的M​​X1-CRE转基因,条件烧蚀C1GALT(FLOX)等位基因(MX1-C1)。 MX1-C1小鼠表现出严重的血小板减少症,巨大的血小板和延长的出血时间。 MX1-C1骨髓中巨核细胞的数量和DNA倍增性均与野生型(WT)小鼠相似。然而,MX1-C1原发性巨核细胞中有很少的丙醇吻。相反,从MX1-C1移植到WT和脾切除的M11-C1小鼠移植的骨髓导致与上述类似的观察结果。 MX1-C1骨髓中GPIBα信使RNA的表达不变,而使用巨核细胞和血小板的流量细胞术和Western印迹分析显示,MX1-C1小鼠中GPIBα蛋白的表达显着降低。此外,循环MX1-C1血小板表现出微管盘数量的增加,尽管正常的α-和β-微管蛋白水平。我们的观察结果表明,O-Glycan是末端巨核细胞分化和血小板生产所必需的,并且由于蛋白水解增加可能导致缺乏O-聚糖的细胞中的GPIBα降低。

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