出现糖脂介导的信号转导系统的新证据

Shuichi Tsuji, Naoya Kojima, Seiji Hitoshi
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引用次数: 7

摘要

神经节苷类化合物不仅在神经组织中大量存在,而且在突触膜中具有复杂的结构,因此在脑研究领域受到了特别的关注。小鼠神经母细胞瘤细胞系Neuro2a表达GM3和b系列神经节苷脂的量可忽略不计,但表达A系列神经节苷脂的量显著(GM1和GD1a)。转染编码GD3合成酶的cDNA后,发生GD3和b系列神经节苷脂的重新合成和表达,并诱导神经2a细胞轴突样神经突生长和胆碱能分化。另一方面,转染α 1,2-聚焦转移酶后,轴突样神经突的生长受到抑制,而树突样神经突的生长受到抑制。这些观察结果直接证明了糖基转移酶的基因表达,以及随后神经节苷脂的生物合成及其在细胞表面的表达对神经细胞的发育和分化至关重要。
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New evidence for the occurrence of a glycolipid-mediated signal transduction system

Gangliosides have attracted particular attention in the field of brain research, since they were found not only to be abundant in neural tissue but also to have intricate structures in synaptic membranes. A murine neuroblastoma cell line, Neuro2a, expresses negligible amounts of GM3 and b-series gangliosides, but significant amounts of a-series gangliosides (GM1 and GD1a). With the transfection of cDNA encoding GD3 synthase, the de novo synthesis and expression of GD3 and b-series gangliosides occurred, and, furthermore, it induced the growth of axon-like neurites and cholinergic differentiation of Neuro2a cells. On the other hand, with the transfection of an α 1,2-fucosyltransferase, the axon-like neurite outgrowth was suppressed and dendrite-like neurites were outgrowth. These observations directly demonstrate the primary importance of the gene expression of a glycosyltransferase, and of the subsequent biosynthesis of gangliosides and their expression on the cell surface for neural cell development and differentiation.

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