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培养的雪旺细胞对主要髓磷脂糖蛋白表达的分解代谢调节。

Catabolic regulation of the expression of the major myelin glycoprotein by Schwann cells in culture.

作者信息

Brunden K R, Windebank A J, Poduslo J F

机构信息

Department of Neurology, Mayo Clinic, Rochester, MN 55905.

出版信息

J Neurochem. 1990 Feb;54(2):459-66. doi: 10.1111/j.1471-4159.1990.tb01894.x.

Abstract

Previous studies have suggested that neonatal Schwann cell cultures deprived of axonal contact do not express components of the myelin membrane, including the major myelin glycoprotein, P0. In contrast, Schwann cells from permanently transected, adult nerve exhibit continued biosynthesis of P0 after culture, suggesting that the ability to express the myelin glycoprotein may depend on the degree of cellular differentiation. To examine further the ability of Schwann cell cultures to express P0 as a function of age, we have performed precursor incorporation studies on endoneurial explants from 4- to 12-day-old rat sciatic nerves after 5 days in culture. The data reveal that explants from 12-day-old animals synthesize detectable levels of this integral myelin protein when assayed by [3H]mannose incorporation, even though there is no apparent myelin assembly in the cultures. Pulse-chase analysis of cultures from 12-day-old rats demonstrates that [3H]mannose-labeled P0 is substantially degraded within 3 h. This catabolism largely can be prevented by the addition of swainsonine, ammonium chloride, or L-methionine methyl ester to the pulse-chase media. The former agent alters oligosaccharide processing whereas the latter two compounds inhibit lysosomal function. The P0 synthesized by the 12-day explant cultures following the addition of swainsonine is readily fucosylated, implying that the protein has progressed at least as far as the medial Golgi before its exit and subsequent catabolism. If cultures from 4-, 6-, and 8-day-old animals are analyzed for P0 biosynthesis by [3H]mannose incorporation in the presence of swainsonine, detectable levels of the glycoprotein are seen.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

先前的研究表明,缺乏轴突接触的新生雪旺细胞培养物不表达髓鞘膜成分,包括主要髓鞘糖蛋白P0。相比之下,来自永久性横断的成年神经的雪旺细胞在培养后仍持续进行P0的生物合成,这表明表达髓鞘糖蛋白的能力可能取决于细胞分化程度。为了进一步研究雪旺细胞培养物表达P0的能力与年龄的关系,我们对培养5天后4至12日龄大鼠坐骨神经的神经内膜外植体进行了前体掺入研究。数据显示,尽管培养物中没有明显的髓鞘组装,但通过[3H]甘露糖掺入法检测时,12日龄动物的外植体能够合成可检测水平的这种整合髓鞘蛋白。对12日龄大鼠培养物的脉冲追踪分析表明,[3H]甘露糖标记的P0在3小时内基本降解。通过在脉冲追踪培养基中添加苦马豆素、氯化铵或L-甲硫氨酸甲酯,这种分解代谢在很大程度上可以被阻止。前一种试剂改变寡糖加工过程,而后两种化合物抑制溶酶体功能。添加苦马豆素后,12日龄外植体培养物合成的P0很容易被岩藻糖基化,这意味着该蛋白在离开并随后被分解代谢之前至少已经进入了内侧高尔基体。如果在苦马豆素存在的情况下,通过[3H]甘露糖掺入法分析4、6和8日龄动物的培养物中P0的生物合成情况,就可以看到可检测水平的糖蛋白。(摘要截断于250字)

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