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眼内注射河豚毒素对发育中大鼠视神经中[3H]脯氨酸和[3H]岩藻糖标记物质快速轴突运输的影响。

The effect of intraocular injection of tetrodotoxin on fast axonal transport of [3H]proline- and [3H]fucose-labeled materials in the developing rat optic nerve.

作者信息

Riccio R V, Matthews M A

出版信息

Neuroscience. 1985 Dec;16(4):1027-39. doi: 10.1016/0306-4522(85)90113-7.

Abstract

The fast axonal transport of [3H]proline-labeled proteins and [3H]fucose-labeled glycoproteins delivered to the dorsal lateral geniculate nucleus in the developing rat optic nerve was investigated during tetrodotoxin-induced monocular impulse blockade. Repeated intraocular injections of various dosages of tetrodotoxin or citrate buffer vehicle were made every two days in rats aged 5-21 days postnatal, and the accumulation of rapidly transported radioactivity in the lateral geniculate nucleus measured between three and twelve hours post-injection at each age. The effectiveness of prolonged tetrodotoxin treatment was monitored by loss of the pupillary light reflex and the level of cytochrome oxidase activity in the contralateral superior colliculus and dorsal lateral geniculate nucleus. Numbers of optic axons proximal to the chiasm and the frequency of retinal ganglion cells per unit distance from the optic disc were examined for signs of tetrodotoxin-induced degeneration of the retinofugal pathway. Tetrodotoxin-treatment reduced the amount of fucosyl glycoproteins, but not proline-labeled proteins, axonally transported to the lateral geniculate nucleus during the first three weeks of postnatal development. Other studies indicated that tetrodotoxin significantly reduced the incorporation of [3H]fucose into retinal proteins indicating that the reduction in transport was probably due to a decrease in precursor incorporation into retinal ganglion cells. Electron microscopy of ganglion cells at 21 days revealed dilated and vacuolated Golgi cisternae associated with tetrodotoxin treatment, suggesting that tetrodotoxin may alter fucose metabolism by secondarily disrupting Golgi organization. Other protein synthetic machinery in these cells, including ribosomes and rough endoplasmic reticulum, appeared normal throughout tetrodotoxin treatment. These data indicate that Na+-dependent optic impulse activity may be indirectly related to the axonal transport of glycoproteins during early postnatal development by mediating the incorporation of precursor into glycoproteins at the Golgi apparatus and their subsequent entrance into the fast transport system.

摘要

在河豚毒素诱导的单眼冲动阻断期间,研究了发育中大鼠视神经中[3H]脯氨酸标记的蛋白质和[3H]岩藻糖标记的糖蛋白向背外侧膝状核的快速轴突运输。对出生后5 - 21天的大鼠每两天进行一次眼内重复注射不同剂量的河豚毒素或柠檬酸盐缓冲液载体,并在每个年龄阶段注射后3至12小时测量外侧膝状核中快速运输放射性物质的积累。通过瞳孔对光反射的丧失以及对侧上丘和背外侧膝状核中细胞色素氧化酶活性水平来监测长期河豚毒素治疗的有效性。检查视交叉近端的视神经轴突数量以及从视盘起每单位距离视网膜神经节细胞的频率,以寻找河豚毒素诱导的视网膜神经纤维通路退变的迹象。河豚毒素治疗减少了出生后发育前三周轴突运输到外侧膝状核的岩藻糖基糖蛋白的量,但未减少脯氨酸标记的蛋白质的量。其他研究表明,河豚毒素显著降低了[3H]岩藻糖掺入视网膜蛋白质中的量,这表明运输减少可能是由于前体掺入视网膜神经节细胞减少所致。对21天大的神经节细胞进行电子显微镜检查发现,与河豚毒素治疗相关的高尔基体池扩张和空泡化,这表明河豚毒素可能通过继发破坏高尔基体组织来改变岩藻糖代谢。在整个河豚毒素治疗过程中,这些细胞中的其他蛋白质合成机制,包括核糖体和粗面内质网,看起来都是正常的。这些数据表明,在出生后早期发育过程中,依赖钠离子的视冲动活动可能通过介导前体在高尔基体中掺入糖蛋白并随后进入快速运输系统,与糖蛋白的轴突运输间接相关。

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