Marotta C A, Strocchi P, Gilbert J M
Brain Res. 1979 May 5;167(1):93-106. doi: 10.1016/0006-8993(79)90265-8.
The subunit structure of rat brain synaptosomal tubulin was examined by high resolution two-dimensional gel fractionation. Whole brain cytoplasmic tubulin consists of two groups of alpha subunits (alpha1 and alpha2), and a minimum of two beta subunits (beta1 and beta2). Both alpha subunits consist of a major relatively acidic form and minor relatively basic forms. In contrast, tubulin purified from synaptoplasm contains an additional subunit, alpha3, which has the same isoelectric point but slightly faster electrophoretic mobility than alpha1 and alpha2. All synaptosomal alpha subunits are the relatively acidic forms and the minor basic forms are absent. The synaptosomal beta subunits have electrophoretic properties similar to the corresponding cytoplasmic forms. The alpha3 synaptosomal tubulin subunit has affinity for colchicine, has a tryptic peptide map similar to whole brain cytoplasmic alpha tubulin, and can be purified by a standard tubulin purification method.
通过高分辨率二维凝胶分级分离法研究了大鼠脑突触体微管蛋白的亚基结构。全脑细胞质微管蛋白由两组α亚基(α1和α2)以及至少两组β亚基(β1和β2)组成。两种α亚基均由一种主要的相对酸性形式和少量相对碱性形式组成。相比之下,从突触质中纯化的微管蛋白含有另一种亚基α3,其具有相同的等电点,但电泳迁移率略快于α1和α2。所有突触体α亚基均为相对酸性形式,不存在少量碱性形式。突触体β亚基具有与相应细胞质形式相似的电泳特性。突触体α3微管蛋白亚基对秋水仙碱有亲和力,其胰蛋白酶肽图谱与全脑细胞质α微管蛋白相似,并且可以通过标准的微管蛋白纯化方法进行纯化。