Localisation of N-acetylaspartate in oligodendrocytes/myelin

被引:0
作者
Kaja Nordengen
Christoph Heuser
Johanne Egge Rinholm
Reuben Matalon
Vidar Gundersen
机构
[1] Institute of Basic Medical Sciences,Department of Anatomy
[2] University of Oslo,Department of Pediatrics
[3] Institute of Molecular Medicine and Experimental Immunology,Department of Neurology
[4] Rheinische Friedrich Wilhelms University,undefined
[5] Janelia Farm Research Campus,undefined
[6] Howard Hughes Medical Institute,undefined
[7] University of Texas Medical Branch,undefined
[8] Oslo University Hospital,undefined
来源
Brain Structure and Function | 2015年 / 220卷
关键词
Cerebellum; Immunogold; leukodystrophy; Canavan disease; Glutamate; Aspartate;
D O I
暂无
中图分类号
学科分类号
摘要
The role of N-acetylaspartate in the brain is unclear. Here we used specific antibodies against N-acetylaspartate and immunocytochemistry of carbodiimide-fixed adult rodent brain to show that, besides staining of neuronal cell bodies in the grey matter, N-acetylaspartate labelling was present in oligodendrocytes/myelin in white matter tracts. Immunoelectron microscopy of the rat hippocampus showed that N-acetylaspartate was concentrated in the myelin. Also neuronal cell bodies and axons contained significant amounts of N-acetylaspartate, while synaptic elements and astrocytes were low in N-acetylaspartate. Mitochondria in axons and neuronal cell bodies contained higher levels of N-acetylaspartate compared to the cytosol, compatible with synthesis of N-acetylaspartate in mitochondria. In aspartoacylase knockout mice, in which catabolism of N-acetylaspartate is blocked, the levels of N-acetylaspartate were largely increased in oligodendrocytes/myelin. In these mice, the highest myelin concentration of N-acetylaspartate was found in the cerebellum, a region showing overt dysmyelination. In organotypic cortical slice cultures there was no evidence for N-acetylaspartate-induced myelin toxicity, supporting the notion that myelin damage is induced by the lack of N-acetylaspartate for lipid production. Our findings also implicate that N-acetylaspartate signals on magnetic resonance spectroscopy reflect not only vital neurons but also vital oligodendrocytes/myelin.
引用
收藏
页码:899 / 917
页数:18
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