Ringel I, Horwitz S B
Department of Molecular Pharmacology, Albert Einstein College of Medicine, Bronx, New York.
J Pharmacol Exp Ther. 1991 Nov;259(2):855-60.
Taxol stabilizes microtubules against the depolymerizing effects of cold temperature, drugs and Ca++. In this report, the effect of alkaline pH on microtubules polymerized in the presence of taxol has been studied. Although taxol-microtubules are more stable than microtubules assembled in the presence of GTP, taxol-microtubules can be partially disassembled when the pH becomes more alkaline. A portion of the recovered tubulin dimer is assembly competent upon pH adjustment to approximately 6.6 and the microtubules formed upon the induction of assembly by GTP are normal as judged by electron microscopy. The data indicate that alkaline pH can be used to recover assembly-competent tubulin from a taxol-microtubule complex. At pH 6.6, taxol-induced polymers consisted of two components. The majority were microtubules, but in addition hoops and ribbons were also present. At alkaline pH, the microtubules were more stable than the hoops and ribbons and at pH greater than 7.5 they were the only stable structures. Microtubules stabilized by taxol are protected against the depolymerizing action of podophyllotoxin even at alkaline pH, whereas the hoops and ribbons are depolymerized.
紫杉醇可稳定微管,使其免受低温、药物和钙离子的解聚作用影响。在本报告中,研究了碱性pH对在紫杉醇存在下聚合的微管的影响。尽管紫杉醇微管比在鸟苷三磷酸(GTP)存在下组装的微管更稳定,但当pH变得更碱性时,紫杉醇微管会部分解聚。当pH值调整到约6.6时,一部分回收的微管蛋白二聚体具有组装能力,并且通过电子显微镜判断,由GTP诱导组装形成的微管是正常的。数据表明,碱性pH可用于从紫杉醇-微管复合物中回收具有组装能力的微管蛋白。在pH 6.6时,紫杉醇诱导的聚合物由两部分组成。大部分是微管,但此外还存在环和带。在碱性pH下,微管比环和带更稳定,在pH大于7.5时,它们是唯一稳定的结构。即使在碱性pH下,由紫杉醇稳定的微管也能免受鬼臼毒素的解聚作用,而环和带则会解聚。