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新生霉素及相关香豆素与热休克蛋白90依赖性信号蛋白的耗竭

Novobiocin and related coumarins and depletion of heat shock protein 90-dependent signaling proteins.

作者信息

Marcu M G, Schulte T W, Neckers L

机构信息

Department of Cell and Cancer Biology, Medicine Branch, National Cancer Institute, National Institutes of Health, Bethesda, MD 20850, USA.

出版信息

J Natl Cancer Inst. 2000 Feb 2;92(3):242-8. doi: 10.1093/jnci/92.3.242.

Abstract

BACKGROUND

Heat shock protein 90 (Hsp90) interacts with and stabilizes several oncogenic protein kinases (e.g., p185(erbB2), p60(v-src), and Raf-1) and is required for the stability and dominant-negative function of mutated p53 protein. Two unrelated antibiotics, geldanamycin and radicicol, bind specifically to an atypical nucleotide-binding pocket of Hsp90, a site that shares homology with the adenosine triphosphate (ATP)-binding domain of bacterial DNA gyrase B. This interaction leads to destabilization of proteins that interact with Hsp90. Since the nucleotide-binding site of gyrase B is targeted by coumarin antibiotics (e.g., novobiocin), we investigated whether these drugs can also interact with Hsp90 and affect its activity.

METHODS

We used immobilized novobiocin, geldanamycin, or radicicol to isolate either endogenous Hsp90 from cell lysates or Hsp90 deletion fragments translated in vitro. Effects of the coumarin antibiotics novobiocin, chlorobiocin, and coumermycin A1 on several proteins interacting with Hsp90 were assessed in vitro and in vivo.

RESULTS

Hsp90 binding to immobilized novobiocin was competed by soluble coumarins and ATP but not by geldanamycin or radicicol. A carboxy-terminal Hsp90 fragment bound immobilized novobiocin but not immobilized geldanamycin, while a geldanamycin-binding amino-terminal fragment did not bind novobiocin. All three coumarins markedly reduced cellular levels of p185(erbB2), p60(v-src), Raf-1, and mutated p53. Furthermore, novobiocin reduced Raf-1 levels in the spleens of mice treated with the drug.

CONCLUSIONS

These coumarin antibiotics, particularly novobiocin, represent a first-generation alternative to other Hsp90-targeting drugs that are not as well tolerated. Novobiocin's unique interaction with Hsp90 identifies an additional site on this protein amenable to pharmacologic interference with small molecules.

摘要

背景

热休克蛋白90(Hsp90)与多种致癌蛋白激酶相互作用并使其稳定(例如,p185(erbB2)、p60(v-src)和Raf-1),并且是突变型p53蛋白稳定性和显性负性作用所必需的。两种不相关的抗生素格尔德霉素和根赤壳菌素特异性结合Hsp90的一个非典型核苷酸结合口袋,该位点与细菌DNA促旋酶B的三磷酸腺苷(ATP)结合结构域具有同源性。这种相互作用导致与Hsp90相互作用的蛋白质不稳定。由于促旋酶B的核苷酸结合位点是香豆素类抗生素(例如新生霉素)的作用靶点,我们研究了这些药物是否也能与Hsp90相互作用并影响其活性。

方法

我们使用固定化的新生霉素、格尔德霉素或根赤壳菌素从细胞裂解物中分离内源性Hsp90或体外翻译的Hsp90缺失片段。在体外和体内评估了香豆素类抗生素新生霉素、氯新生霉素和香豆霉素A1对几种与Hsp90相互作用的蛋白质的影响。

结果

可溶性香豆素和ATP可竞争Hsp90与固定化新生霉素的结合,但格尔德霉素或根赤壳菌素不能。Hsp90的羧基末端片段可结合固定化的新生霉素,但不结合固定化的格尔德霉素,而与格尔德霉素结合的氨基末端片段不结合新生霉素。所有三种香豆素均显著降低了细胞中p185(erbB2)、p60(v-src)、Raf-1和突变型p53的水平。此外,新生霉素降低了用该药物处理的小鼠脾脏中Raf-1的水平。

结论

这些香豆素类抗生素,尤其是新生霉素,是第一代耐受性较差的其他靶向Hsp90药物的替代品。新生霉素与Hsp90的独特相互作用确定了该蛋白上另一个适合小分子进行药理干预的位点。

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