MSU-DOE Plant Research Laboratory, Michigan State University, 48824, East Lansing, MI, USA.
Planta. 1983 Feb;157(1):46-52. doi: 10.1007/BF00394539.
The microtubule protein, tubulin, was isolated from most other proteins of cell suspension cultures of Nicotiana tabacum L. by its copolymerization with cow-brain tubulin. Cow-brain tubulin was added to the soluble protein fraction of extract from (35)S-labeled tobacco cells and subjected to two cycles of temperature-dependent assembly-disassembly (copolymerization). When analyzed by sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) about 70% of the radioactivity in the twice copolymerized protein was found in a prominent doublet migrating close to the doublet of brain tubulin. When analyzed by two-dimensional isoelectric-focusing-SDS-PAGE the radioactive doublet behaved like the doublet of brain tubulin. Limited proteolysis of the individual polypeptides of the coublets showed that, while the peptide maps of the leading radioactive band and of the β-subunit of brain tubulin were virtually indistinguishable, the maps of the trailing radioactive band and of the α-subunit of brain tubulin, though similar, were not identical. Most of the copolymerized (35)S-labeled protein also behaved like brain tubulin during gel filtration and ion-exchange chromatography. It is concluded that the doublet of radioactive polypeptides isolated by copolymerization with brain tubulin are tobacco tubulin polypeptides that have, in their native as well as denatured forms, properties very similar to, but not identical with, cow brain tubulin. Apparently, tubulin has been highly conserved during evolution.
微管蛋白,微管蛋白,是通过与其共聚合从烟草悬浮细胞的可溶性蛋白质部分中分离出来的。牛脑微管蛋白被添加到(35)S 标记的烟草细胞提取物的可溶性蛋白部分中,并经历了两次温度依赖性的组装-拆卸(共聚合)循环。当用十二烷基硫酸钠聚丙烯酰胺凝胶电泳(SDS-PAGE)分析时,在两次共聚合蛋白中约 70%的放射性活性存在于靠近脑微管蛋白二聚体的显著双体中。当用二维等电聚焦-SDS-PAGE 分析时,放射性双体的行为类似于脑微管蛋白的双体。对双体的各个多肽的有限蛋白水解表明,虽然领头放射性带和脑微管蛋白的β-亚基的肽图谱几乎无法区分,但尾随放射性带和脑微管蛋白的α-亚基的图谱虽然相似,但并不相同。大多数共聚合的(35)S 标记蛋白在凝胶过滤和离子交换层析中也表现得类似于脑微管蛋白。结论是,与脑微管蛋白共聚合分离的放射性多肽双体是烟草微管蛋白多肽,它们在天然和变性形式下具有与牛脑微管蛋白非常相似但不相同的性质。显然,微管蛋白在进化过程中得到了高度的保守。