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Glycolytic oligodendrocytes maintain myelin and long-term axonal integrity

机译:糖酵解少突胶质细胞维持髓磷脂和长期轴突完整性

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摘要

Oligodendrocytes, the myelin-forming glial cells of the central nervous system, maintain long-term axonal integrity. However, the underlying support mechanisms are not understood4. Here we identify a metabolic component of axon-glia interactions by generating conditional CoxlO (protoheme IX farnesyltransferase) mutant mice, in which oligodendrocytes and Schwann cells fail to assemble stable mitochondrial cytochrome c oxidase (COX, also known as mitochondrial complex IV). In the peripheral nervous system, CoxlO conditional mutants exhibit severe neuropathy with dysmye-lination, abnormal Remak bundles, muscle atrophy and paralysis. Notably, perturbing mitochondrial respiration did not cause glial cell death. In the adult central nervous system, we found no signs of demyelination, axonal degeneration or secondary inflammation. Unlike cultured oligodendrocytes, which are sensitive to COX inhibitors, post-myelination oligodendrocytes survive well in the absence of COX activity. More importantly, by in vivo magnetic resonance spectroscopy, brain lactate concentrations in mutants were increased compared with controls, but were detectable only in mice exposed to volatile anaesthetics. This indicates that aerobic glycolysis products derived from oligodendrocytes are rapidly metabolized within white matter tracts. Because myelinated axons can use lactate when energy-deprived, our findings suggest a model in which axon-glia metabolic coupling serves a physiological function.
机译:少突胶质细胞是中枢神经系统中形成髓鞘的神经胶质细胞,可维持长期的轴突完整性。但是,底层的支持机制尚不了解4。在这里,我们通过产生条件性CoxlO(原血红素法呢基法呢基转移酶)突变小鼠来识别轴突-胶质细胞相互作用的代谢成分,其中少突胶质细胞和雪旺细胞无法组装稳定的线粒体细胞色素C氧化酶(COX,也称为线粒体复合物IV)。在外周神经系统中,Cox10条件性突变体表现出严重的神经病,伴有dysmye-lination,异常的Remak束,肌肉萎缩和麻痹。值得注意的是,线粒体呼吸紊乱并未引起神经胶质细胞死亡。在成人中枢神经系统中,我们未发现脱髓鞘,轴突变性或继发性炎症的迹象。与对COX抑制剂敏感的培养少突胶质细胞不同,髓鞘化后少突胶质细胞在没有COX活性的情况下可以很好地存活。更重要的是,通过体内磁共振波谱,与对照组相比,突变体中脑乳酸的浓度有所增加,但仅在暴露于挥发性麻醉剂的小鼠中可检测到。这表明源自少突胶质细胞的需氧糖酵解产物在白质区域内快速代谢。因为有髓的轴突在能量缺乏时可以使用乳酸,因此我们的发现提出了一种模型,其中轴突-胶质糖代谢耦合发挥了生理功能。

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  • 来源
    《Nature》 |2012年第7399期|p.517-521|共5页
  • 作者单位

    Max Planck Institute of Experimental Medicine, Department of Neurogenetics,Hermann-Rein-Strasse3,D-37075 Goettingen, Germany;

    Max Planck Institute of Experimental Medicine, Department of Neurogenetics,Hermann-Rein-Strasse3,D-37075 Goettingen, Germany;

    Mitochondrial Research Group, Institute for Ageingand Health,The Medical School, Newcastle University, Framlington Place, Newcastle upon Tyne NE2 4HH, UK,Center for Neuroregeneration, University of Edinburgh, 49 Little France Crescent, Edinburgh EH164SB, UK;

    Biomedizinische NMR Forschungs GmbH am Max Planck Institute of Biophysical Chemistry, D-37070 Gbttingen, Germany;

    Max Planck Institute of Experimental Medicine, Department of Neurogenetics,Hermann-Rein-Strasse3,D-37075 Goettingen, Germany,Department of Molecular Physiology, Institute of Physiology, University of Saarland, D-66421 Homburg, Germany;

    Max Planck Institute of Experimental Medicine, Department of Neurogenetics,Hermann-Rein-Strasse3,D-37075 Goettingen, Germany;

    Max Planck Institute of Experimental Medicine, Department of Neurogenetics,Hermann-Rein-Strasse3,D-37075 Goettingen, Germany, Department of Neurosurgery.Charite-University Medicine Berlin, Chariteplatz 1, D-10117 Berlin, Germany;

    Max Planck Institute of Experimental Medicine, Department of Neurogenetics,Hermann-Rein-Strasse3,D-37075 Goettingen, Germany;

    Max Planck Institute of Experimental Medicine, Department of Neurogenetics,Hermann-Rein-Strasse3,D-37075 Goettingen, Germany;

    Max Planck Institute of Experimental Medicine, Department of Neurogenetics,Hermann-Rein-Strasse3,D-37075 Goettingen, Germany,Department of Diagnostic Radiology, Am Botanischen Garten 14, University of Kiel, D-24118 Kiel, Germany;

    University of Miami, Miller School of Medicine, Department of Neurology and Cell Biology & Anatomy, 1095 NW 14th Terrace, Miami, Florida 33136, USA;

    Department of Cell Biology,Erasmus MC, 3000 CA Rotterdam, Netherlands;

    Institute of Cell Biology, Department of Biology, ETH Hoenggerberg, Schafmattstrasse 18,8093 Zuerich, Switzerland;

    Max Planck Institute of Experimental Medicine, Department of Neurogenetics,Hermann-Rein-Strasse3,D-37075 Goettingen, Germany;

    Max Planck Institute of Experimental Medicine, Department of Neurogenetics,Hermann-Rein-Strasse3,D-37075 Goettingen, Germany,Department of Clinical Neurophysiology, University of Goettingen (UMG), Robert-Koch-Strasse 40, D-37075 Goettingen, Germany;

    University of Miami, Miller School of Medicine, Department of Neurology and Cell Biology & Anatomy, 1095 NW 14th Terrace, Miami, Florida 33136, USA;

    Biomedizinische NMR Forschungs GmbH am Max Planck Institute of Biophysical Chemistry, D-37070 Gbttingen, Germany;

    Max Planck Institute of Experimental Medicine, Department of Neurogenetics,Hermann-Rein-Strasse3,D-37075 Goettingen, Germany;

    Max Planck Institute of Experimental Medicine, Department of Neurogenetics,Hermann-Rein-Strasse3,D-37075 Goettingen, Germany;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 02:54:08

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