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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Inhibition of glycosphingolipid biosynthesis does not impair growth or morphogenesis of the postimplantation mouse embryo.
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Inhibition of glycosphingolipid biosynthesis does not impair growth or morphogenesis of the postimplantation mouse embryo.

机译:抑制鞘糖脂的生物合成不会损害植入后小鼠胚胎的生长或形态发生。

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摘要

Whole embryo culture (WEC) of organogenesis-stage mouse embryos was adapted for glycosphingolipid (GSL) metabolic studies to evaluate the hypothesis that de novo GSL biosynthesis is a prerequisite for growth and morphogenesis of the early postimplantation embryo. WEC supports the growth and development of postimplantation mouse embryos to stages that are indistinguishable from those achieved in vivo. N-Butyldeoxygalactonojirimycin (NB-DGJ) is an N-alkylated imino sugar that specifically inhibits biosynthesis of all glucosylceramide-based GSLs. NB-DGJ inhibited glucosylceramide and lactosylceramide biosynthesis nearly completely and inhibited ganglioside biosynthesis approximately 90% in both the embryo and visceral yolk sac. NB-DGJ also significantly reduced total ganglioside content in both the embryo and visceral yolk sac as estimated by the cholera toxin immunooverlay technique. A shift in expression from the structurally simple to the structurally complex gangliosides was also observed in NB-DGJ-treated embryos and yolk sacs. Despite causing major changes in GSL biosynthesis and composition, NB-DGJ had no effect on embryo viability, growth, or morphology. The findings suggest that de novo GSL biosynthesis may not be a prerequisite for the growth and morphogenesis of the organogenesis-stage mouse embryo.
机译:器官发生阶段小鼠胚胎的全胚培养(WEC)用于糖鞘脂(GSL)代谢研究,以评估从头GSL生物合成是早期植入后胚胎生长和形态发生的前提的假设。 WEC支持植入后小鼠胚胎的生长和发育,使其与体内获得的胚胎无法区分。 N-丁基脱氧半乳糖苷嘧啶(NB-DGJ)是一种N-烷基化的亚氨基糖,可特异性抑制所有基于葡糖神经酰胺的GSL的生物合成。 NB-DGJ在胚胎和内脏卵黄囊中几乎完全抑制了葡萄糖基神经酰胺和乳糖基神经酰胺的生物合成,并抑制了神经节苷脂的生物合成约90%。通过霍乱毒素免疫覆盖技术估计,NB-DGJ还可以显着降低胚胎和内脏卵黄囊中总神经节苷脂的含量。在NB-DGJ处理的胚胎和卵黄囊中也观察到了表达从结构简单的神经节苷脂向结构复杂的神经节苷脂的转变。尽管引起了GSL生物合成和组成的重大变化,但是NB-DGJ对胚胎的生存能力,生长或形态没有影响。这些发现表明从头GSL生物合成可能不是器官发生阶段小鼠胚胎的生长和形态发生的先决条件。

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