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神经节苷脂缺陷小鼠中胶质细胞功能的体外分析

In vitro analysis of glial cell function in ganglioside-deficient mice.

作者信息

Silajdzić Edina, Willison Hugh J, Furukawa Koichi, Barnett Susan C

机构信息

Division of Clinical Neurosciences, Glasgow Biomedical Research Centre, University of Glasgow, Glasgow, Scotland.

出版信息

J Neurosci Res. 2009 Aug 15;87(11):2467-83. doi: 10.1002/jnr.22085.

Abstract

Gangliosides are a family of sialic acid-containing glycosphingolipids highly enriched in neuronal and glial membranes, where they play pleiotropic roles in nervous system function. In this glial cell biological study, we used mice deficient in glycosyltransferases involved in ganglioside biosynthesis to gain insights into the possible role of ganglioside overexpression or deficiency on glial cell proliferation, migration, and differentiation in vitro. Primary cultures of olfactory ensheathing cells, oligodendrocyte lineage cells, and Schwann cells isolated from beta1,4-N-acetylgalactosaminyl (beta1,4-GalNAc) transferase- and alpha-2,8-sialyltransferase-deficient mice demonstrated subtle differences in their behavior when compared with wild-type glia. Oligodendrocyte-axonal interactions were investigated in dissociated embryonic mixed spinal cord cultures in which axonal ensheathment with myelin internodes and organized nodes of Ranvier form. In these myelinating cultures, deficiency of complex gangliosides, as found in beta1,4-GalNAc T(-/-) mice, resulted in the temporal disorganization of K(v) and Na(+) channels at the nodes of Ranvier, similar to that seen in beta1,4-GalNAc T(-/-) mice in vivo. These data show that glycosyltransferase deficiency and the consequent ganglioside imbalance has subtle effects on a range of glial cell functions and that in vitro systems can be used to explore these in ways that complement whole animal physiology. Our results are also consistent with the absence of gross neurodevelopmental dysfunction in mice lacking a variety of different gangliosides, suggesting that ganglioside redundancy and substitution are mechanisms that compensate for the lack of a full complement of complex gangliosides.

摘要

神经节苷脂是一类富含唾液酸的糖鞘脂,在神经元和神经胶质细胞膜中高度富集,在神经系统功能中发挥着多方面的作用。在这项神经胶质细胞生物学研究中,我们使用了参与神经节苷脂生物合成的糖基转移酶缺陷型小鼠,以深入了解神经节苷脂过表达或缺陷对神经胶质细胞在体外增殖、迁移和分化可能产生的作用。从β1,4-N-乙酰半乳糖胺基转移酶(β1,4-GalNAc)和α-2,8-唾液酸转移酶缺陷型小鼠分离出的嗅鞘细胞、少突胶质细胞系细胞和施万细胞的原代培养物,与野生型神经胶质细胞相比,其行为表现出细微差异。在解离的胚胎混合脊髓培养物中研究了少突胶质细胞与轴突的相互作用,在这种培养物中会形成髓鞘节段包裹轴突以及有组织的郎飞结。在这些髓鞘形成培养物中,如在β1,4-GalNAc T(-/-)小鼠中发现的那样,复合神经节苷脂的缺乏导致郎飞结处K(v)和Na(+)通道的暂时紊乱,这与β1,4-GalNAc T(-/-)小鼠体内所见情况相似。这些数据表明,糖基转移酶缺陷以及随之而来的神经节苷脂失衡对一系列神经胶质细胞功能有细微影响,并且体外系统可用于以补充整体动物生理学的方式探索这些影响。我们的结果还与缺乏多种不同神经节苷脂的小鼠不存在明显神经发育功能障碍一致,这表明神经节苷脂冗余和替代是补偿复合神经节苷脂完整组合缺失的机制。

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