首页> 美国卫生研究院文献>The Journal of Neuroscience >Congenital CNS Hypomyelination in the Fig4 Null Mouse Is Rescued by Neuronal Expression of the PI(35)P2 Phosphatase Fig4
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Congenital CNS Hypomyelination in the Fig4 Null Mouse Is Rescued by Neuronal Expression of the PI(35)P2 Phosphatase Fig4

机译:通过PI(35)P2磷酸酶Fig4的神经元表达挽救了Fig4空小鼠中的先天性中枢神经系统hypomyelination。

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摘要

The plt (pale tremor) mouse carries a null mutation in the Fig4(Sac3) gene that results in tremor, hypopigmentation, spongiform degeneration of the brain, and juvenile lethality. FIG4 is a ubiquitously expressed phosphatidylinositol 3,5-bisphosphate phosphatase that regulates intracellular vesicle trafficking along the endosomal–lysosomal pathway. In humans, the missense mutation FIG4I41T combined with a FIG4 null allele causes Charcot-Marie-Tooth 4J disease, a severe form of peripheral neuropathy. Here we show that Fig4 null mice exhibit a dramatic reduction of myelin in the brain and spinal cord. In the optic nerve, smaller-caliber axons lack myelin sheaths entirely, whereas many large- and intermediate-caliber axons are myelinated but show structural defects at nodes of Ranvier, leading to delayed propagation of action potentials. In the Fig4 null brain and optic nerve, oligodendrocyte (OL) progenitor cells are present at normal abundance and distribution, but the number of myelinating OLs is greatly compromised. The total number of axons in the Fig4 null optic nerve is not reduced. Developmental studies reveal incomplete myelination rather than elevated cell death in the OL linage. Strikingly, there is rescue of CNS myelination and tremor in transgenic mice with neuron-specific expression of Fig4, demonstrating a non-cell-autonomous function of Fig4 in OL maturation and myelin development. In transgenic mice with global overexpression of the human pathogenic FIG4 variant I41T, there is rescue of the myelination defect, suggesting that the CNS of CMT4J patients may be protected from myelin deficiency by expression of the FIG4I41T mutant protein.
机译:plt(苍白震颤)小鼠在Fig4(Sac3)基因中携带无效突变,导致震颤,色素沉着不足,脑海绵状变性和少年致死性。 FIG4是一种普遍表达的磷脂酰肌醇3,5-二磷酸磷酸酶,可调节沿着内体-溶酶体途径的细胞内囊泡运输。在人类中,FIG4 I41T 的错义突变与FIG4无效等位基因相结合会引起Charcot-Marie-Tooth 4J病,这是一种严重的周围神经病。在这里,我们显示Fig4 null小鼠大脑和脊髓中的髓磷脂显着减少。在视神经中,小口径轴突完全没有髓鞘,而许多大口径和中口径轴突却有髓,但在Ranvier结节处显示结构缺陷,导致动作电位的传播延迟。在Fig4中,大脑和视神经无效,少突胶质细胞(OL)祖细胞以正常的丰度和分布存在,但是髓鞘化OL的数量受到很大影响。 Fig4无效视神经中轴突的总数没有减少。发育研究显示,OL线性中的髓鞘形成不完全,而不是细胞死亡增加。令人惊讶的是,在具有图4的神经元特异性表达的转基因小鼠中,中枢神经系统的髓鞘化和震颤得以挽救,证明了图4在OL成熟和髓鞘发育中的非细胞自主功能。在具有人类致病性FIG4变体I41T整体过量表达的转基因小鼠中,髓鞘缺损得以挽救,这表明CMT4J患者的CNS可以通过表达FIG4 I41T 突变蛋白而免受髓鞘缺乏症的影响。 。

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