Suppr超能文献

硫酸脑苷脂在髓鞘形成小鼠脑内的囊泡运输。与溶酶体的功能关联?

Vesicular transport of sulfatide in the myelinating mouse brain. Functional association with lysosomes?

作者信息

Burkart T, Caimi L, Siegrist H P, Herschkowitz N N, Wiesmann U N

出版信息

J Biol Chem. 1982 Mar 25;257(6):3151-6.

PMID:6949901
Abstract

Sulfatide synthesis and its subcellular distribution kinetics was followed in the myelinating brain of 17-day-old mice. Pulse-labeling-chasing conditions were achieved by an intraperitoneal injection of (35S)sulfate followed 2 h later by a second injection of a high dose of unlabeled sulfate. At 1, 2, 3, 4, and 6 h after the (35S)sulfate injection, the brains were removed, homogenized, and subcellular fractions were obtained by differential and discontinuous sucrose gradient centrifugation (Eichberg, J., Whittaker, V. P., and Dawson, R. M. (1964) Biochem. J. 92, 91-100). The microsomal membranes were further subfractionated (Siegrist, H. P., Burkart, T., Wiesmann, U. N., Herschkowitz, N. N., and Spycher, M. A. (1979) J. Neurochem. 33, 497-504) into light myelin, plasma membranes, Golgi vesicles, endoplasmic reticulum membranes, and heavy vesicles associated with acid hydrolase activities. The [35S]sulfatide-labeling kinetics was measured in all subcellular fractions. The results indicate that sulfatides are synthesized in the Golgi-endoplasmic reticulum complex and transferred in vesicles at least partially associated with lysosomes to the myelin membranes. The association of sulfatides with lysosomes could explain the existence of the previously described labile pool of newly synthesized sulfatides (Burkart, T., Hofmann, K., Siegrist, H. P., Herschkowitz, N. N., and Wiesmann, U. N. (1981) Dev. Biol. 83, 42-48) and also could be a form of vesicular transport to the myelin.

摘要

在17日龄小鼠的髓鞘形成脑区中追踪硫苷脂的合成及其亚细胞分布动力学。通过腹腔注射(35S)硫酸盐实现脉冲标记-追踪条件,2小时后再注射高剂量未标记的硫酸盐。在注射(35S)硫酸盐后的1、2、3、4和6小时,取出大脑,匀浆,并通过差速和不连续蔗糖梯度离心获得亚细胞组分(艾希伯格,J.,惠特克,V. P.,和道森,R. M.(1964年)《生物化学杂志》92,91 - 100)。微粒体膜进一步细分(西格里斯,H. P.,布尔卡特,T.,维斯曼,U. N.,赫什科维茨,N. N.,和斯皮歇尔,M. A.(1979年)《神经化学杂志》33,497 - 504)为轻髓鞘、质膜、高尔基体囊泡、内质网膜以及与酸性水解酶活性相关的重囊泡。在所有亚细胞组分中测量[35S]硫苷脂的标记动力学。结果表明,硫苷脂在高尔基体-内质网复合体中合成,并通过至少部分与溶酶体相关的囊泡转移至髓鞘膜。硫苷脂与溶酶体的关联可以解释先前描述的新合成硫苷脂不稳定池的存在(布尔卡特,T.,霍夫曼,K.,西格里斯,H. P.,赫什科维茨,N. N.,和维斯曼,U. N.(1981年)《发育生物学》83,42 - 48),并且也可能是一种向髓鞘的囊泡运输形式。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验