Saltarelli D, Pantaloni D
Biochemistry. 1982 Jun 8;21(12):2996-3006. doi: 10.1021/bi00541a030.
The tubulin-colchicine (1:1) complex was shown to be able to polymerize in vitro under the buffer conditions of microtubule assembly from pure native tubulin. The physical characteristics of this peculiar polymer have been investigated under a variety of conditions and compared with those of microtubules. Polymerization consisted of the nucleation followed by the growth process, was characterized by a critical concentration, and exhibited divalent ion, temperature, and pH dependences very similar to those of microtubules, Guanosine 5'-triphosphate (GTP) or 5' -guanylyl methylene-diphosphate (GMPPCP) was required for polymerization, and guanosine 5'-diphosphate (GDP) was a potent inhibitor. GTP hydrolysis was totally disconnected from the polymerization process and occurred as well under nonpolymerizing conditions. The results are discussed in view of the different types of protein-protein interactions exhibited by tubulin and of the possible relationship between the conformation of the GTP site and the interaction areas.
已证明微管蛋白 - 秋水仙碱(1:1)复合物在由纯天然微管蛋白进行微管组装的缓冲条件下能够在体外聚合。已在各种条件下研究了这种特殊聚合物的物理特性,并与微管的物理特性进行了比较。聚合由成核随后生长过程组成,其特征在于临界浓度,并且表现出与微管非常相似的二价离子、温度和pH依赖性。聚合需要鸟苷5'-三磷酸(GTP)或5'-鸟苷基亚甲基二磷酸(GMPPCP),而鸟苷5'-二磷酸(GDP)是一种有效的抑制剂。GTP水解与聚合过程完全无关,并且在非聚合条件下也会发生。鉴于微管蛋白表现出的不同类型的蛋白质 - 蛋白质相互作用以及GTP位点的构象与相互作用区域之间的可能关系,对结果进行了讨论。