Benowitz L I, Lewis E R
J Neurosci. 1983 Nov;3(11):2153-63. doi: 10.1523/JNEUROSCI.03-11-02153.1983.
Proteins synthesized in goldfish retinal ganglion cells and rapidly transported to the terminals of regenerating optic nerves were analyzed by two-dimensional (2-D) gel electrophoresis. Among the rapidly transported components, the most dramatic change observed during regeneration was for a family of polypeptides having molecular weights between 44,000 and 49,000 (44-49K) and isoelectric points of 4.6 to 4.9. Studies using [35S]methionine as a metabolic precursor in the eye showed that these proteins are present in both membranous and soluble fractions of the optic tectum, particularly during early stages of regeneration. Contralateral visual pathways, left intact to serve as controls, showed only very low levels of the proteins. These labeling changes were quantified in double-isotope studies, in which proteins from intact and regenerating sides were differentially labeled with [3H]proline and [14C]proline, comigrated on 2-D gels, and then counted for 3H/14C ratios. The labeling change for the 44-49K acidic proteins relative to the intact state was found to be over 100-fold in some day 19 regeneration samples and about 30-fold on day 40. Silver-stained gels of a tectal membrane fraction also revealed increased levels of the 44-49K acidic proteins during regeneration, indicating that the observed synthetic changes are accompanied by a net accumulation of the proteins.
通过二维(2-D)凝胶电泳分析了金鱼视网膜神经节细胞中合成并迅速运输到再生视神经终末的蛋白质。在快速运输的成分中,再生过程中观察到的最显著变化是一族分子量在44,000至49,000(44 - 49K)之间且等电点为4.6至4.9的多肽。在眼睛中使用[35S]甲硫氨酸作为代谢前体的研究表明,这些蛋白质存在于视顶盖的膜性和可溶性部分中,尤其是在再生的早期阶段。作为对照保持完整的对侧视觉通路仅显示出极低水平的这些蛋白质。在双同位素研究中对这些标记变化进行了定量,其中来自完整侧和再生侧的蛋白质分别用[3H]脯氨酸和[14C]脯氨酸进行差异标记,在二维凝胶上共同迁移,然后计算3H/14C比率。发现在某些第19天的再生样品中,44 - 49K酸性蛋白质相对于完整状态的标记变化超过100倍,在第40天约为30倍。视顶盖膜部分的银染凝胶也显示再生过程中44 - 49K酸性蛋白质水平增加,表明观察到的合成变化伴随着蛋白质的净积累。