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首页> 外文期刊>Human Molecular Genetics >Mice lacking the transcobalamin-vitamin B12 receptor, CD320, suffer from anemia and reproductive deficits when fed vitamin B12-deficient diet
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Mice lacking the transcobalamin-vitamin B12 receptor, CD320, suffer from anemia and reproductive deficits when fed vitamin B12-deficient diet

机译:小鼠缺乏转基质 - 维生素B12受体,CD320,当喂养维生素B12缺陷饮食时患有贫血和生殖缺陷

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摘要

In humans, poor nutrition, malabsorption and variation in cobalamin (vitamin B12) metabolic genes are associated with hematological, neurological and developmental pathologies. Cobalamin is transported from blood into tissues via the transcobalamin (TC) receptor encoded by the CD320 gene. We created mice carrying a targeted deletion of the mouse ortholog, Cd320. Knockout (KO) mice lacking this TC receptor have elevated levels of plasma methylmalonic acid and homocysteine but are otherwise healthy, viable, fertile and not anemic. To challenge the Cd320 KO mice we maintained them on a vitamin B12-deficient diet. After 5 weeks on this diet, reproductive failure develops in Cd320 KO females but not males. In vitro, homozygous Cd320 KO embryos from cobalamin-deficient Cd320 KO dams develop normally to embryonic day (E) 3.5, while in vivo, few uterine decidual implantation sites are observed at E7.5, suggesting that embryos perish around the time of implantation. Dietary restriction of vitamin B12 induces a severe macrocytic anemia in Cd320 KO mice after 10-12 months while control mice on this diet are anemia-free up to 2 years. Despite the severe anemia, cobalamin-deficient KO mice do not exhibit obvious neurological symptoms. Our results with Cd320 KO mice suggest that an alternative mechanism exists for mice to transport cobalamin independent of the Cd320 encoded receptor. Our findings with deficient diet are consistent with historical and epidemiological data suggesting that low vitamin B12 levels in humans are associated with infertility and developmental abnormalities. Our Cd320 KO mouse model is an ideal model system for studying vitamin B12 deficiency.
机译:在人类中,营养不良,吸收和钴胺蛋白(维生素B12)代谢基因的营养差,血液学,神经和发育病理学有关。通过CD320基因编码的转基质蛋白(TC)受体从血液中从血液输送到组织中。我们创造了携带靶向鼠标滴眼剂的小鼠CD320。缺乏该TC受体的敲除(KO)小鼠具有升高的血浆甲基羟基丙酸和同型半胱氨酸,而是健康,可行,肥沃而不贫血。挑战CD320 KO小鼠,我们将它们维持在维生素B12缺乏饮食中。在这种饮食5周后,生殖失败在CD320 Ko女性中发展但不是男性。在体外,来自钴胺型缺陷的CD320 KO胚胎的纯合CD320 KO胚胎通常在胚胎日(e)3.5通常在体内产生3.5,而在e7.5中观察到几个子宫蜕膜植入位点,表明植入植入时的胚胎灭活。维生素B12的膳食限制在10-12个月后在CD320 Ko小鼠中诱导严重的大血少血症患者,同时对照小鼠进行这种饮食,是贫血,最多2年。尽管贫血剧烈,但钴胺缺乏的KO小鼠没有表现出明显的神经症状。我们的结果,CD320 KO小鼠表明,小鼠的替代机制是否与CD320编码受体无关的钴胺素。我们的饮食缺乏的发现与历史和流行病学数据一致,表明人类的低维生素B12水平与不孕症和发育异常有关。我们的CD320 KO鼠标模型是研究维生素B12缺乏的理想模型系统。

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  • 来源
    《Human Molecular Genetics》 |2018年第20期|共14页
  • 作者单位

    NHGRI Gene &

    Environm Interact Sect Social &

    Behav Res Branch Div Intramural Res NIH Room 5306;

    NHGRI Gene &

    Environm Interact Sect Social &

    Behav Res Branch Div Intramural Res NIH Room 5306;

    NHGRI NIH Transgen Mouse Core Bethesda MD 20892 USA;

    Trinity Coll Dublin Sch Med Dublin Ireland;

    NHGRI Gene &

    Environm Interact Sect Social &

    Behav Res Branch Div Intramural Res NIH Room 5306;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
  • 关键词

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