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正常和再生金鱼视神经中腐胺、亚精胺和精胺的轴突运输

Axonal transport of putrescine, spermidine and spermine in normal and regenerating goldfish optic nerves.

作者信息

Ingoglia N A, Sturman J A, Eisner R A

出版信息

Brain Res. 1977 Jul 22;130(3):433-45. doi: 10.1016/0006-8993(77)90107-x.

Abstract

Radopactove putrescine, spermidine or spermine was injected into the right eye of normal goldfish and fish in which both optic nerves had been crushed 18 days earlier. Fish were sacrificed 0.25-21 days after injection. Trichloroacetic acid-soluble and -insoluble material was extracted from the right retina and both tecta and assayed for radioactivity (significant differences between left and right tecta suggesting axonal transport). The nature of the radioactivity in the TCA-soluble fraction was determined on an amino acid analyzer. Results indicate that putrescine is not axonally transported in intact goldfish optic nerves, but that during regeneration of the optic nerve large amounts of putrescine are axonally transported at rates similar to the fast component of protein transport. Spermidine appears to be axonally transported both in intact optic nerves and in regenerating optic nerves, and at an intermediate rate of transport; the amount of spermidine transported is significantly increased during regeneration. Spermine is also axonally transported in intact and regenerating nerves, at a rate similar to the rapid rate of protein transport. The amount of spermine transported appears to be slightly less in regenerating than in intact nerves during early stages of regeneration, but increases during later stages of nerve regeneration. The results suggest that putrescine and spermidine may be preferentially transported during nerve regeneration, while spermine and spermidine are transported extensively in intact nerves.

摘要

将放射性腐胺、亚精胺或精胺注入正常金鱼以及双侧视神经在18天前已被挤压的金鱼的右眼。在注射后0.25 - 21天处死金鱼。从右侧视网膜和双侧视顶盖中提取三氯乙酸可溶和不可溶物质,并检测其放射性(左右视顶盖之间的显著差异表明轴突运输)。在氨基酸分析仪上测定三氯乙酸可溶部分放射性的性质。结果表明,腐胺在完整的金鱼视神经中不进行轴突运输,但在视神经再生过程中,大量腐胺以与蛋白质运输快速成分相似的速率进行轴突运输。亚精胺在完整视神经和再生视神经中似乎都进行轴突运输,且运输速率处于中等水平;在再生过程中运输的亚精胺量显著增加。精胺在完整和再生神经中也进行轴突运输,速率与蛋白质运输的快速速率相似。在再生早期,再生神经中运输的精胺量似乎略少于完整神经,但在神经再生后期增加。结果表明,在神经再生过程中腐胺和亚精胺可能被优先运输,而精胺在完整神经中广泛运输,亚精胺在完整神经中也广泛运输。

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