Department of Materials Science and Engineering, University of Arizona, Tucson, AZ 85721, USA.
Colloids Surf B Biointerfaces. 2010 Mar 1;76(1):199-206. doi: 10.1016/j.colsurfb.2009.10.033. Epub 2009 Oct 31.
In this study we report crystallization of Taxol in pure water, aqueous solutions containing tubulin proteins and tubulin-containing agarose gels. We show that crystallization of Taxol in tubulin-free aqueous solutions occurs by the formation of sheaf-like crystals, while in the presence of tubulin Taxol crystallizes in the form of spherulites. Whereas sheaves are characteristic for crystals formed by homogeneous nucleation, the spherical symmetry of the Taxol crystal formed in the presence of tubulin suggests they result from heterogeneous nucleation. To explain the formation of tubulin-Taxol nuclei we suggest a new, secondary Taxol-binding site within the tubulin heterodimer. Contrary to the known binding site, where the Taxol molecule is almost completely buried in the protein, the Taxol molecule in the secondary binding site is partially exposed to the solution and may serve as a bridge, connecting other Taxol molecules. Results presented in this work are important for in vivo and in vitro microtubule studies due to the possibility of mistaking these Taxol spherulites for microtubule asters, moreover a novel variable is proposed in the study of cells treated with Taxol for cancer treatment via sequestration of tubulin.
在这项研究中,我们报告了 Taxol 在纯水中、含有微管蛋白的水溶液中和含微管蛋白的琼脂糖凝胶中的结晶情况。我们表明,在无微管蛋白的水溶液中 Taxol 的结晶通过束状晶体的形成发生,而在存在微管蛋白的情况下 Taxol 结晶呈球晶状。虽然束状是由均匀成核形成的晶体的特征,但在微管蛋白存在下形成的 Taxol 晶体的球形对称性表明它们是由异质成核形成的。为了解释微管蛋白-Taxol 核的形成,我们在微管蛋白异二聚体中提出了一个新的、次要的 Taxol 结合位点。与已知的结合位点不同,在该结合位点中,Taxol 分子几乎完全被埋在蛋白质中,而在次要结合位点中的 Taxol 分子部分暴露于溶液中,并且可以作为连接其他 Taxol 分子的桥梁。由于可能将这些 Taxol 球晶误认为是微管星状体,因此本工作中的结果对于体内和体外微管研究很重要,此外,还提出了一个新的变量,用于研究通过微管蛋白隔离进行癌症治疗的 Taxol 处理的细胞。