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金鱼视神经再生过程中快速转运蛋白的特定变化。

Specific changes in rapidly transported proteins during regeneration of the goldfish optic nerve.

作者信息

Benowitz L I, Shashoua V E, Yoon M G

出版信息

J Neurosci. 1981 Mar;1(3):300-7. doi: 10.1523/JNEUROSCI.01-03-00300.1981.

Abstract

Double labeling methods were used to identify changes in the complement of proteins synthesized in the retinal ganglion cells and transported down the optic nerve during the process of axonal regeneration. Eight to 62 days after goldfish underwent a unilateral optic nerve crush, one eye was labeled with [3H]-, the other with [14C]proline. Control and regenerating optic nerves were dissected out and homogenized together after 5 hr, a time which allowed us to examine selectively membrane-bound components which migrate in the rapid phase of axoplasmic transport. Proteins from the two sides were so-purified and separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Analysis of the 3H and 14C incorporation patterns along the gels revealed a radical shift away from the normal labeling spectrum during regeneration, with selective changes in labeling at particular molecular weights varying over a 3-fold range. Eight days after crushing the optic nerve, the greatest increases in labeling were seen for material with apparent molecular weights of 24,000 to 27,000, 44,000, and 210,000 daltons. These peaks declined thereafter, and on days 29 to 39, the most prominent increases were at 110,000 to 140,000 daltons. These studies indicate a continuously changing pattern in the synthesis and/or degradation of proteins that are rapidly transported down the optic nerve during regeneration and point to molecular species potential significance in the establishment of the visual map upon the brain.

摘要

采用双标记法来鉴定视网膜神经节细胞中合成的蛋白质成分在轴突再生过程中的变化,以及这些蛋白质沿视神经向下运输的情况。金鱼单侧视神经挤压损伤8至62天后,一只眼睛用[³H]标记,另一只眼睛用[¹⁴C]脯氨酸标记。5小时后取出对照和再生的视神经并一起匀浆,这段时间能让我们选择性地检测在轴浆快速运输阶段迁移的膜结合成分。对两侧的蛋白质进行纯化,并通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳进行分离。分析凝胶上³H和¹⁴C的掺入模式发现,再生过程中标记谱与正常情况相比发生了根本性变化,在特定分子量处的标记有选择性改变,变化范围达3倍。视神经挤压损伤8天后,表观分子量为24,000至27,000、44,000和210,000道尔顿的物质标记增加最为明显。此后这些峰值下降,在29至39天时,最显著的增加出现在110,000至140,000道尔顿处。这些研究表明,在再生过程中沿视神经快速运输的蛋白质的合成和/或降解模式不断变化,并且指出了分子种类在大脑视觉图谱建立中的潜在重要性。

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