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在没有波形蛋白中间丝网络的情况下,鞘糖脂的生物合成会减少。

Biosynthesis of glycosphingolipids is reduced in the absence of a vimentin intermediate filament network.

作者信息

Gillard B K, Thurmon L T, Harrell R G, Capetanaki Y, Saito M, Yu R K, Marcus D M

机构信息

Department of Medicine, Baylor College of Medicine, Houston, Texas.

出版信息

J Cell Sci. 1994 Dec;107 ( Pt 12):3545-55. doi: 10.1242/jcs.107.12.3545.

Abstract

Our previous observations on the immunocytochemical colocalization of intermediate filaments and glycosphingolipids led us to analyze the role of filaments in the biosynthesis and intracellular transport of glycosphingolipids. Cells with (vim+) and without (vim-) vimentin intermediate filaments were cloned from the adrenal carcinoma cell line SW13. There was no difference between vim+ and vim- cells in the proportion of newly synthesized C6-NBD-glucosylceramide transported to the plasma membrane. The vim+ cells synthesized glycosphingolipids, especially lactosylceramide and globotriosylceramide, and to a lesser extent GM3 ganglioside, more rapidly than vim- cells. The altered rate of biosynthesis did not result from differences in the levels of the glycosyltransferases that synthesize those compounds. To determine whether the presence of a vimentin network was responsible for the differences in biosynthesis, mouse vimentin cDNA was transfected into vim- cells. Transfected cells that expressed a mouse vimentin network demonstrated a twofold or greater increase in the rate of biosynthesis of neutral glycosphingolipids and gangliosides. There was no difference between vim+ and vim- cells in the synthesis of ceramide or sphingomyelin, or in their content of phospholipids or cholesterol. The nature of the biochemical defect(s) underlying the diminished incorporation of radiolabeled sugars into glycosphingolipids is unclear. Possibilities include alterations in the ultrastructure of the Golgi and/or abnormalities in a portion of the endocytic pathway.

摘要

我们之前关于中间丝与糖鞘脂免疫细胞化学共定位的观察结果,促使我们分析丝在糖鞘脂生物合成和细胞内运输中的作用。从肾上腺癌细胞系SW13中克隆出有波形蛋白中间丝(vim+)和无波形蛋白中间丝(vim-)的细胞。在转运至质膜的新合成C6-NBD-葡萄糖神经酰胺比例方面,vim+细胞和vim-细胞之间没有差异。vim+细胞合成糖鞘脂,尤其是乳糖基神经酰胺和球三糖基神经酰胺,并且在较小程度上合成GM3神经节苷脂,其速度比vim-细胞更快。生物合成速率的改变并非由合成这些化合物的糖基转移酶水平差异所致。为了确定波形蛋白网络的存在是否是生物合成差异的原因,将小鼠波形蛋白cDNA转染到vim-细胞中。表达小鼠波形蛋白网络的转染细胞在中性糖鞘脂和神经节苷脂的生物合成速率上提高了两倍或更多。vim+细胞和vim-细胞在神经酰胺或鞘磷脂的合成、磷脂或胆固醇含量方面没有差异。放射性标记糖掺入糖鞘脂减少背后的生化缺陷性质尚不清楚。可能性包括高尔基体超微结构的改变和/或内吞途径一部分的异常。

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