Smith C D, Zhang X
Department of Pharmacology, Fox Chase Cancer Center, Philadelphia, Pennsylvania 19111, USA.
J Biol Chem. 1996 Mar 15;271(11):6192-8. doi: 10.1074/jbc.271.11.6192.
Cryptophycin is a potent antitumor agent that depletes microtubules in intact cells, including cells with the multidrug resistance phenotype. To determine the mechanism of action of cryptophycin, its effects on tubulin function in vitro were analyzed. Cryptophycin reduced the in vitro polymerization of bovine brain microtubules by 50% at a drug:tubulin ratio of 0.1. Cryptophycin did not alter the critical concentration of tubulin required for polymerization, but instead caused substoichiometric reductions in the amount of tubulin that was competent for assembly. Consistent with its persistent effects on intact cells, cryptophycin-treated microtubule protein remained polymerization-defective even after cryptophycin was reduced to sub-inhibitory concentrations. The effects of cryptophycin were not due to denaturation of tubulin and were associated with the accumulation of rings of microtubule protein. The site of cryptophycin interaction with tubulin was examined using functional and competitive binding assays. Cryptophycin blocked the formation of vinblastine-tubulin paracrystals in intact cells and suppressed vinblastine-induced tubulin aggregation in vitro. Cryptophycin inhibited the binding of [3H]vinblastine and the hydrolysis of [gamma32P]GTP by isolated tubulin, but did not block the binding of colchicine. These results indicate that cryptophycin disrupts the Vinca alkaloid site of tubulin; however, the molecular details of this interaction are distinct from those of other antimitotic drugs.
隐藻素是一种强效抗肿瘤剂,可使完整细胞中的微管减少,包括具有多药耐药表型的细胞。为了确定隐藻素的作用机制,分析了其对体外微管蛋白功能的影响。在药物与微管蛋白比例为0.1时,隐藻素使牛脑微管的体外聚合减少了50%。隐藻素没有改变聚合所需的微管蛋白临界浓度,而是导致能够组装的微管蛋白量发生亚化学计量的减少。与其对完整细胞的持续作用一致,即使隐藻素降至亚抑制浓度后,经其处理的微管蛋白仍存在聚合缺陷。隐藻素的作用并非由于微管蛋白变性,且与微管蛋白环的积累有关。使用功能和竞争性结合试验研究了隐藻素与微管蛋白相互作用的位点。隐藻素可阻止长春碱-微管蛋白副晶体在完整细胞中的形成,并在体外抑制长春碱诱导的微管蛋白聚集。隐藻素抑制[3H]长春碱的结合以及分离的微管蛋白对[γ32P]GTP的水解,但不阻止秋水仙碱的结合。这些结果表明,隐藻素破坏微管蛋白的长春花生物碱结合位点;然而,这种相互作用的分子细节与其他抗有丝分裂药物不同。