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Egr2-guided histone H2B monoubiquitination is required for peripheral nervous system myelination

机译:EGR2引导的组蛋白H2B整个周围神经系统髓鞘所必需的

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摘要

Schwann cells are the nerve ensheathing cells of the peripheral nervous system. Absence, loss and malfunction of Schwann cells or their myelin sheaths lead to peripheral neuropathies such as CharcotMarie-Tooth disease in humans. During Schwann cell development and myelination chromatin is dramatically modified. However, impact and functional relevance of these modifications are poorly understood. Here, we analyzed histone H2B monoubiquitination as one such chromatin modification by conditionally deleting the Rnf40 subunit of the responsible E3 ligase in mice. Rnf40-deficient Schwann cells were arrested immediately before myelination or generated abnormally thin, unstable myelin, resulting in a peripheral neuropathy characterized by hypomyelination and progressive axonal degeneration. By combining sequencing techniques with functional studies we show that H2B monoubiquitination does not influence global gene expression patterns, but instead ensures selective high expression of myelin and lipid biosynthesis genes and proper repression of immaturity genes. This requires the specific recruitment of the Rnf40-containing E3 ligase by Egr2, the central transcriptional regulator of peripheral myelination, to its target genes. Our study identifies histone ubiquitination as essential for Schwann cell myelination and unravels new disease-relevant links between chromatin modifications and transcription factors in the underlying regulatory network.
机译:Schwann细胞是外周神经系统的神经鞘细胞。施曼细胞或其髓鞘的缺失,损失和故障导致人类的外周神经病,如人类的Charcotmarie牙齿疾病。在施万细胞开发期间,髓鞘染色质显着修饰。然而,这些修改的影响和功能相关性似乎很差。这里,通过在小鼠中有条件地删除负责的E3连接酶的RNF40亚基,分析了组蛋白H2B单胞质作为一种这种染色质修饰。 RNF40缺陷型施旺细胞在髓鞘形成或产生异常薄的不稳定髓鞘之前立即被逮捕,导致外周神经病变,其特征在于低髓鞘,逐步轴突变性。通过将测序技术与功能研究组合,我们表明H2B巨倍素化不会影响全局基因表达模式,而是确保髓鞘和脂质生物合成基因的选择性高表达和对不仿生基因的适当抑制。这需要通过EGR2,含有含RNF40的E3连接酶的特异性募集到其靶基因的外周髓鞘调节剂。我们的研究鉴定了组蛋白泛素,对Schwann细胞髓鞘产生至关重要,并且在潜在的监管网络中的染色质修饰和转录因子之间进行了新的疾病相关联系。

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  • 来源
    《Nucleic Acids Research》 |2020年第16期|共18页
  • 作者单位

    Friedrich Alexander Univ Erlangen Nurnberg Emil Fischer Zentrum Inst Biochem Fahrstr 17 D-91054 Erlangen Germany;

    Friedrich Alexander Univ Erlangen Nurnberg Emil Fischer Zentrum Inst Biochem Fahrstr 17 D-91054 Erlangen Germany;

    Friedrich Alexander Univ Erlangen Nurnberg Emil Fischer Zentrum Inst Biochem Fahrstr 17 D-91054 Erlangen Germany;

    Friedrich Alexander Univ Erlangen Nurnberg Emil Fischer Zentrum Inst Biochem Fahrstr 17 D-91054 Erlangen Germany;

    Univ Med Ctr Gottingen Dept Gen Visceral &

    Pediat Surg D-37075 Gottingen Germany;

    Univ Med Ctr Gottingen Dept Gen Visceral &

    Pediat Surg D-37075 Gottingen Germany;

    Univ Regensburg Inst Humananat &

    Embryol Univ Str 31 D-93053 Regensburg Germany;

    Univ Regensburg Inst Humananat &

    Embryol Univ Str 31 D-93053 Regensburg Germany;

    Univ Med Ctr Gottingen Dept Gen Visceral &

    Pediat Surg D-37075 Gottingen Germany;

    Friedrich Alexander Univ Erlangen Nurnberg Emil Fischer Zentrum Inst Biochem Fahrstr 17 D-91054 Erlangen Germany;

    Friedrich Alexander Univ Erlangen Nurnberg Emil Fischer Zentrum Inst Biochem Fahrstr 17 D-91054 Erlangen Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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