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CMP-唾液酸:聚-α-2,8-唾液酸基唾液酸转移酶与神经细胞黏附分子中多唾液酸单元的生物合成

CMP-NeuNAc:poly-alpha-2,8-sialosyl sialyltransferase and the biosynthesis of polysialosyl units in neural cell adhesion molecules.

作者信息

McCoy R D, Vimr E R, Troy F A

出版信息

J Biol Chem. 1985 Oct 15;260(23):12695-9.

PMID:4044605
Abstract

Prokaryotic derived probes that specifically recognize alpha-2,8-ketosidically linked polysialosyl units were developed to identify and study the temporal expression of these unique carbohydrate moieties in developing neural tissue (Vimr, E. R., McCoy, R. D., Vollger, H. F., Wilkison, N. C., and Troy, F. A. (1984) Proc. Natl. Acad. Sci. U.S.A. 81, 1971-1975). These polysialosyl units cap N-linked oligosaccharides of the complex-type on neural cell adhesion molecules (N-CAM). A Golgi-enriched fraction from 20-day-old fetal rat brain contains a membrane-associated sialyltransferase that catalyzes the incorporation of [14C]N-acetylneuraminic acid [( 14C]NeuNAc) from CMP-[14C] NeuNAc into polymeric products. At pH 6.0, 84 pmol of NeuNAc mg of protein-1 h-1 were incorporated. In sodium dodecyl sulfate-polyacrylamide gels, the major radiolabeled species migrated with a mobility expected for N-CAM. A bacteriophage-derived endoneuraminidase specific for polysialic acid was used to demonstrate that at least 20-30% of the [14C]NeuNAc was incorporated into alpha-2,8-linked polysialosyl units. This was confirmed by structural studies which showed that the endoneuraminidase-sensitive brain material consisted of multimers of sialic acid. The addition of a partially purified preparation of chick N-CAM to the membranous sialyltransferase stimulated sialic acid incorporation 3-fold. The product of this reaction was also sensitive to endoneuraminidase and contained alpha-2,8-linked polysialosyl chains, thus showing that N-CAM can serve as an exogenous acceptor for sialylation in vitro. Sialic acid incorporated into adult rat brain membranes was resistant to endoneuraminidase, indicating that the poly-alpha-2,8-sialosyl sialyltransferase activity is restricted to an early developmental epoch. It is recommended that the enzyme described here be designated CMP-NeuNAc:poly-alpha-2,8-sialosyl sialyltransferase and the trivial name poly-alpha-2,8-sialosyl sialyltransferase be adopted.

摘要

人们开发了能特异性识别α-2,8-酮糖苷键连接的多唾液酸基单元的原核生物衍生探针,用于鉴定和研究这些独特碳水化合物部分在发育中的神经组织中的时空表达(Vimr, E. R., McCoy, R. D., Vollger, H. F., Wilkison, N. C., and Troy, F. A. (1984) Proc. Natl. Acad. Sci. U.S.A. 81, 1971 - 1975)。这些多唾液酸基单元封盖神经细胞黏附分子(N-CAM)上复合型的N-连接寡糖。来自20日龄胎鼠脑的富含高尔基体的部分含有一种膜相关唾液酸转移酶,该酶催化将CMP-[14C]N-乙酰神经氨酸[14C]NeuNAc中的[14C]NeuNAc掺入聚合产物中。在pH 6.0时,每毫克蛋白质每小时掺入84 pmol的NeuNAc。在十二烷基硫酸钠-聚丙烯酰胺凝胶中,主要的放射性标记物种迁移率与N-CAM预期的一致。一种对多唾液酸具有特异性的噬菌体衍生的神经氨酸酶被用于证明至少20 - 30%的[14C]NeuNAc被掺入α-2,8-连接的多唾液酸基单元中。结构研究证实了这一点,该研究表明对神经氨酸酶敏感的脑物质由唾液酸多聚体组成。向膜唾液酸转移酶中添加部分纯化的鸡N-CAM制剂可使唾液酸掺入增加3倍。该反应产物也对神经氨酸酶敏感,并含有α-2,8-连接的多唾液酸链,因此表明N-CAM在体外可作为唾液酸化的外源受体。掺入成年大鼠脑膜中的唾液酸对神经氨酸酶具有抗性,这表明多-α-2,8-唾液酸基唾液酸转移酶活性仅限于早期发育阶段。建议将此处描述的酶命名为CMP-NeuNAc:多-α-2,8-唾液酸基唾液酸转移酶,并采用俗名多-α-2,8-唾液酸基唾液酸转移酶。

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