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新生霉素:重新设计一种DNA促旋酶抑制剂以实现对热休克蛋白90(hsp90)的选择性抑制

Novobiocin: redesigning a DNA gyrase inhibitor for selective inhibition of hsp90.

作者信息

Burlison Joseph A, Neckers Len, Smith Andrew B, Maxwell Anthony, Blagg Brian S J

机构信息

Department of Medicinal Chemistry, The University of Kansas, 1251 Wescoe Hall Drive, Malott Hall 4070, Lawrence, Kansas 66045-7563, USA.

出版信息

J Am Chem Soc. 2006 Dec 6;128(48):15529-36. doi: 10.1021/ja065793p.

Abstract

Novobiocin is a member of the coumermycin family of antibiotics and is a well-established inhibitor of DNA gyrase. Recent studies have shown that novobiocin binds to a previously unrecognized ATP-binding site at the C-terminus of Hsp90 and induces degradation of Hsp90-dependent client proteins at approximately 700 microM. In an effort to develop more efficacious inhibitors of the C-terminal binding site, a library of novobiocin analogues was prepared and initial structure-activity relationships revealed. These data suggested that the 4-hydroxy moiety of the coumarin ring and the 3'-carbamate of the noviose appendage were detrimental to Hsp90 inhibitory activity. In an effort to confirm these findings, 4-deshydroxy novobiocin (DHN1) and 3'-descarbamoyl-4-deshydroxynovobiocin (DHN2) were prepared and evaluated against Hsp90. Both compounds were significantly more potent than the natural product, and DHN2 proved to be more active than DHN1. In an effort to determine whether these moieties are important for DNA gyrase inhibition, these compounds were tested for their ability to inhibit DNA gyrase and found to exhibit significant reduction in gyrase activity. Thus, we have established the first set of compounds that clearly differentiate between the C-terminus of Hsp90 and DNA gyrase, converted a well-established gyrase inhibitor into a selective Hsp90 inhibitor, and confirmed essential structure-activity relationships for the coumermycin family of antibiotics.

摘要

新生霉素是香豆霉素类抗生素的一员,是一种公认的DNA回旋酶抑制剂。最近的研究表明,新生霉素与热休克蛋白90(Hsp90)C末端一个以前未被识别的ATP结合位点结合,并在约700微摩尔浓度时诱导Hsp90依赖性客户蛋白的降解。为了开发更有效的C末端结合位点抑制剂,制备了一个新生霉素类似物文库,并揭示了初步的构效关系。这些数据表明,香豆素环的4-羟基部分和新霉糖附属物的3'-氨基甲酸酯对Hsp90抑制活性不利。为了证实这些发现,制备了4-去羟基新生霉素(DHN1)和3'-去氨甲酰基-4-去羟基新生霉素(DHN2),并对其进行了Hsp90抑制活性评估。这两种化合物的活性均明显高于天然产物,且DHN2的活性比DHN1更高。为了确定这些部分对DNA回旋酶抑制是否重要,测试了这些化合物抑制DNA回旋酶的能力,发现它们的回旋酶活性显著降低。因此,我们已经建立了第一组能够明确区分Hsp90 C末端和DNA回旋酶的化合物,将一种公认的回旋酶抑制剂转化为一种选择性Hsp90抑制剂,并证实了香豆霉素类抗生素的基本构效关系。

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