首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Cell-specific deletion of glucosylceramide synthase in brain leads to severe neural defects after birth
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Cell-specific deletion of glucosylceramide synthase in brain leads to severe neural defects after birth

机译:脑中葡萄糖基神经酰胺合酶的细胞特异性缺失导致出生后严重的神经缺陷

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摘要

Sialic acid-containing glycosphingolipids, i.e., gangliosides, constitute a major component of neuronal cells and are thought to be essential for brain function. UDP-glucose:ceramide glucosyltransferase (Ugcg) catalyzes the initial step of glycosphingolipid (GSL) biosynthesis. To gain insight into the role of GSLs in brain development and function, a cell-specific disruption of Ugcg was performed as indicated by the absence of virtually all glucosylceramicle-based GSLs. Shortly after birth, mice showed dysfunction of cerebellum and peripheral nerves, associated with structural defects. Axon branching of Purkinje cells was significantly reduced. In primary cultures of neurons, dendritic complexity was clearly diminished, and pruning occurred early. Myelin sheaths of peripheral nerves were broadened and focally severely disorganized. GSL deficiency also led to a down-regulation of gene expression sets involved in brain development and homeostasis. Mice died approximate to 3 weeks after birth. These results imply that GSLs are essential for brain maturation.
机译:含有唾液酸的鞘糖脂,即神经节苷脂,构成神经元细胞的主要成分,被认为对脑功能至关重要。 UDP-葡萄糖:神经酰胺葡萄糖基转移酶(Ugcg)催化糖鞘脂(GSL)生物合成的起始步骤。为了深入了解GSL在大脑发育和功能中的作用,对Ugcg进行了细胞特异性破坏,这是因为几乎所有基于葡萄糖基神经酰胺的GSL都不存在。出生后不久,小鼠表现出小脑和周围神经功能障碍,并伴有结构缺陷。浦肯野细胞的轴突分支明显减少。在神经元的原代培养中,树突状复杂性明显降低,并且修剪较早发生。周围神经的髓鞘鞘变宽并严重局限。 GSL缺乏症还导致参与大脑发育和体内平衡的基因表达集的下调。小鼠在出生后约3周死亡。这些结果表明,GSL对于大脑成熟至关重要。

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