de la Torre J, Villasante A, Corral J, Avila J
J Supramol Struct Cell Biochem. 1981;17(2):183-96. doi: 10.1002/jsscb.380170208.
Addition of increasing amounts of zinc to a cold microtubule protein solution results in the disappearance of 30 S oligomer found in the absence of that cation and in the appearance of new tubulin oligomers, 90 S and 23 S. When a microtubule protein solution is warmed in the presence of zinc, tubulin-sheets are assembled. We have tested the influence of microtubule associated proteins and the zinc:tubulin ratio on the polymerization process. Depletion of microtubule associated proteins results in wider and longer tubulin-sheets than those polymerized in the presence of microtubule associated proteins. However by increasing zinc concentration wider but shorter tubulin-sheets were found. These results suggest that microtubule associated proteins and zinc could promote nucleation of tubulin-sheets, but zinc also promotes lateral tubulin-tubulin interaction. This interpretation was confirmed when microtubule protein was assembled at a low zinc:tubulin ratio. In such conditions composite structures of microtubules and zinc tubulin-sheets are formed. These composite structures are consequence of a lateral attachment of a zinc tubulin-sheet on a microtubule protofilament.
向冷的微管蛋白溶液中添加越来越多的锌,会导致在没有该阳离子的情况下发现的30 S寡聚物消失,并出现新的微管蛋白寡聚物,即90 S和23 S。当微管蛋白溶液在锌存在的情况下加热时,微管蛋白片层会组装起来。我们测试了微管相关蛋白以及锌与微管蛋白的比例对聚合过程的影响。微管相关蛋白的耗尽会导致形成比在微管相关蛋白存在下聚合而成的更宽、更长的微管蛋白片层。然而,通过增加锌的浓度,会发现更宽但更短的微管蛋白片层。这些结果表明,微管相关蛋白和锌可以促进微管蛋白片层的成核,但锌也促进微管蛋白之间的横向相互作用。当微管蛋白以低锌与微管蛋白比例组装时,这一解释得到了证实。在这种情况下,会形成微管和锌微管蛋白片层的复合结构。这些复合结构是锌微管蛋白片层横向附着在微管原纤维上的结果。