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鬼臼毒素和诺考达唑可对抗IKP104对微管蛋白降解的作用。

Podophyllotoxin and nocodazole counter the effect of IKP104 on tubulin decay.

作者信息

Prasad V, Chaudhuri A R, Curcio M, Tomita I, Mizuhashi F, Murata K, Ludueña R F

机构信息

Department of Biochemistry, University of Texas Health Science Center, San Antonio 78284, USA.

出版信息

J Protein Chem. 1998 Oct;17(7):663-8. doi: 10.1007/BF02780968.

Abstract

Tubulin, the subunit protein of microtubules, undergoes a time-dependent loss of functional properties known as decay. We have previously shown that the drug 2-(4-fluorophenyl)- -(2-chloro-3,5-dimethoxyphenyl)-3-methyl-6-phenyl-4(1H)-pyridinone (IKP104) accelerates decay, but that in the presence of colchicine, IKP104 becomes a stabilizer of tubulin. To see if this is due to conformational effects specific to colchicine or simply to occupancy at the colchicine site, we examined the effects of nocodazole and podophyllotoxin, two well-known competitive inhibitors of colchicine for binding to tubulin, on IKP104's acceleration of decay. We found that podophyllotoxin abolished IKP104's accelerating effect and, like colchicine, turned it into a stabilizer of tubulin. Nocodazole's effects were similar to those of podophyllotoxin and colchicine, in that it abolished IKP104-induced enhancement of decay; however, in the presence of nocodazole, IKP104 caused little or no stabilization of tubulin. Since colchicine, nocodazole, and podophyllotoxin have very different interactions with tubulin, but all inhibit the IKP104-induced enhancement of decay, our findings suggest that this inhibition arises from occupancy of the colchicine site rather than from a direct conformational effect of these two drugs.

摘要

微管蛋白是微管的亚基蛋白,会经历一种称为衰变的功能特性随时间的丧失。我们之前已经表明,药物2-(4-氟苯基)- -(2-氯-3,5-二甲氧基苯基)-3-甲基-6-苯基-4(1H)-吡啶酮(IKP104)会加速衰变,但在秋水仙碱存在的情况下,IKP104会成为微管蛋白的稳定剂。为了探究这是由于秋水仙碱特有的构象效应还是仅仅由于其在秋水仙碱位点的占据,我们研究了诺考达唑和鬼臼毒素这两种已知的秋水仙碱与微管蛋白结合的竞争性抑制剂对IKP104加速衰变的影响。我们发现鬼臼毒素消除了IKP104的加速作用,并且像秋水仙碱一样,使其变成了微管蛋白的稳定剂。诺考达唑的作用与鬼臼毒素和秋水仙碱相似,即它消除了IKP104诱导的衰变增强;然而,在诺考达唑存在的情况下,IKP104对微管蛋白几乎没有或没有稳定作用。由于秋水仙碱、诺考达唑和鬼臼毒素与微管蛋白的相互作用非常不同,但都抑制了IKP104诱导的衰变增强,我们的研究结果表明这种抑制是由于秋水仙碱位点的占据,而不是这两种药物的直接构象效应。

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