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正常和突变小鼠胚胎的神经节苷脂组成

Ganglioside composition of normal and mutant mouse embryos.

作者信息

Bouvier J D, Seyfried T N

机构信息

Department of Biology, Boston College, Chestnut Hill, Massachusetts 02167.

出版信息

J Neurochem. 1989 Feb;52(2):460-6. doi: 10.1111/j.1471-4159.1989.tb09143.x.

Abstract

The enrichment of gangliosides in neuronal membranes suggests that they play an important role in CNS development. We recently found a marked tetrasialoganglioside deficiency in twl/twl mutant mouse embryos at embryonic day (E)-11. The recessive twl/twl mutants die at embryonic ages E-9 to E-18 from failed neural differentiation in the ventral portion of the neural tube. In the present study, we examined the composition and distribution of gangliosides in twl/twl mutant mouse embryos at E-12. The total ganglioside sialic acid concentration was significantly lower in the mutants than in normal (+/-) embryos. The mutants also expressed significant deficiencies of gangliosides in the "b" metabolic pathway (GD3, GD1b, GT1b, and GQ1b) and elevations in levels of gangliosides in the "a" metabolic pathway (GM3, GM2, GM1, and GD1a). These findings suggest that the mutants have a partial deficiency in the activity of a specific sialyltransferase in the b pathway. Regional ganglioside distribution was also studied in E-12 normal mouse embryos. The ganglioside composition in heads and bodies was similar to each other and to whole embryos. Total ganglioside concentration and the distribution of b pathway gangliosides were significantly higher in neural tube regions than in nonneural tube regions. These findings suggest that b pathway gangliosides accumulate in differentiating neural cells and that the deficiency of these gangliosides in the twl/twl mutants is closely associated with failed neural differentiation.

摘要

神经节苷脂在神经元膜中的富集表明它们在中枢神经系统发育中起重要作用。我们最近发现,在胚胎第11天(E-11)的twl/twl突变小鼠胚胎中,四唾液酸神经节苷脂明显缺乏。隐性twl/twl突变体在胚胎期E-9至E-18死亡,原因是神经管腹侧神经分化失败。在本研究中,我们检测了E-12期twl/twl突变小鼠胚胎中神经节苷脂的组成和分布。突变体中神经节苷脂唾液酸的总浓度显著低于正常(+/-)胚胎。突变体在“b”代谢途径(GD3、GD1b、GT1b和GQ1b)中的神经节苷脂也有明显缺乏,而在“a”代谢途径(GM3、GM2、GM1和GD1a)中的神经节苷脂水平升高。这些发现表明,突变体在b途径中特定唾液酸转移酶的活性存在部分缺陷。我们还研究了E-12期正常小鼠胚胎中神经节苷脂的区域分布。头部和身体中的神经节苷脂组成彼此相似,且与整个胚胎相似。神经管区域的神经节苷脂总浓度和b途径神经节苷脂的分布明显高于非神经管区域。这些发现表明,b途径神经节苷脂在分化的神经细胞中积累,并且twl/twl突变体中这些神经节苷脂的缺乏与神经分化失败密切相关。

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