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Analysis of the carbohydrate composition of axonally transported glycoconjugates in sciatic nerve

机译:坐骨神经中轴突转运糖结合物的碳水化合物组成分析

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摘要

Glycosidase enzyme digestion in combination with postembedding lectin cytochemistry was used to study the carbohydrate composition of axonally transported glycoproteins. A cold block procedure for the interruption of axonal transport was employed to increase selectively the population of anterograde moving components on the proximal side of the transport block. Electron-microscopic observations revealed that a cold block applied to the sciatic nerve of an anesthetized rat produced an increase in axonal smooth membrane vesicles at a site directly proximal to the cold block. Postembedding lectin cytochemistry of the sciatic nerve demonstrated a substantial increase in concanavalin A (Con A), wheat germ agglutinin (WGA), and succinylated WGA binding sites in axons directly proximal to the cold block. Endoglycosidase H (endo H) digestion prior to lectin cytochemistry characterized a large population of the axonally transported Con A binding sites as polymannose and/or hybrid N-linked oligosaccharides (endo H- susceptible). A distinct population of neuraminidase-resistant WGA binding sites was also found in axons directly proximal to the transport block. The concomitant increase in smooth membrane vesicles and lectin binding sites in axons at the transport block supports the hypothesis that a system(s) of smooth membrane inside the axon is involved in the transport of glycoproteins from the cell soma to their cell surface destinations. Results of glycosidase digestions and lectin cytochemistry experiments suggest that many of the axonally transported glycoprotein carbohydrates are polymannose and/or hybrid N-linked oligosaccharides. This observation is especially interesting in relation to our previous reports, which indicated that most lectin binding sites on the neuronal cell surface are composed of complex oligosaccharides.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:糖苷酶消化与包埋后凝集素细胞化学结合用于研究轴突转运糖蛋白的碳水化合物组成。采用冷块程序来中断轴突运输,以选择性地增加运输块近端的顺行运动成分的数量。电镜观察发现,在麻醉大鼠的坐骨神经上施加冷阻滞后,在紧邻该冷阻滞的部位,轴突平滑膜囊泡增多。坐骨神经的包埋后凝集素细胞化学显示,伴刀豆球蛋白A(Con A),小麦胚芽凝集素(WGA)和琥珀酰化的WGA结合位点在紧邻冷块的轴突处大量增加。凝集素细胞化学之前的糖苷内切酶H(endo H)消化的特征是轴突运输的Con A结合位点的数量很大,为聚甘露糖和/或杂合N-连接的寡糖(对H敏感)。在直接靠近转运区的轴突中也发现了独特的抗神经氨酸酶WGA结合位点群体。轴突内部的光滑膜囊泡和凝集素结合位点的同时增加,支持了轴突内部光滑膜系统参与糖蛋白从细胞体到细胞表面的转运的假说。糖苷酶消化和凝集素细胞化学实验的结果表明,许多轴突转运的糖蛋白碳水化合物是聚甘露糖和/或杂合的N-连接寡糖。相对于我们以前的报道,该观察特别有趣,该报道表明神经元细胞表面上的大多数凝集素结合位点由复杂的寡糖组成。(摘要截短为250字)

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