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将热休克蛋白90(Hsp90)抑制剂重新用作靶向组氨酸激酶的抗生素。

Repurposing Hsp90 inhibitors as antibiotics targeting histidine kinases.

作者信息

Vo Chau D, Shebert Hanna L, Zikovich Shannon, Dryer Rebecca A, Huang Tony P, Moran Lindsey J, Cho Juno, Wassarman Douglas R, Falahee Bryn E, Young Peter D, Gu Garrick H, Heinl James F, Hammond John W, Jackvony Taylor N, Frederick Thomas E, Blair Jimmy A

机构信息

Williams College, Department of Chemistry, 47 Lab Campus Drive, Williamstown, MA 01267, USA.

Department of Biochemistry & Molecular Biophysics, Washington University School of Medicine, St. Louis, MO 63110, USA.

出版信息

Bioorg Med Chem Lett. 2017 Dec 1;27(23):5235-5244. doi: 10.1016/j.bmcl.2017.10.036. Epub 2017 Oct 19.

Abstract

To address the growing need for new antimicrobial agents, we explored whether inhibition of bacterial signaling machinery could inhibit bacterial growth. Because bacteria rely on two-component signaling systems to respond to environmental changes, and because these systems are both highly conserved and mediated by histidine kinases, inhibiting histidine kinases may provide broad spectrum antimicrobial activity. The histidine kinase ATP binding domain is conserved with the ATPase domain of eukaryotic Hsp90 molecular chaperones. To find a chemical scaffold for compounds that target histidine kinases, we leveraged this conservation. We screened ATP competitive Hsp90 inhibitors against CckA, an essential histidine kinase in Caulobacter crescentus that controls cell growth, and showed that the diaryl pyrazole is a promising scaffold for histidine kinase inhibition. We synthesized a panel of derivatives and found that they inhibit the histidine kinases C. crescentus CckA and Salmonella PhoQ but not C. crescentus DivJ; and they inhibit bacterial growth in both Gram-negative and Gram-positive bacterial strains.

摘要

为满足对新型抗菌剂日益增长的需求,我们探究了抑制细菌信号传导机制是否能抑制细菌生长。由于细菌依靠双组分信号系统来应对环境变化,且这些系统高度保守并由组氨酸激酶介导,抑制组氨酸激酶可能会提供广谱抗菌活性。组氨酸激酶的ATP结合结构域与真核生物Hsp90分子伴侣的ATP酶结构域保守。为找到靶向组氨酸激酶的化合物的化学骨架,我们利用了这种保守性。我们针对新月柄杆菌中控制细胞生长的必需组氨酸激酶CckA筛选了ATP竞争性Hsp90抑制剂,并表明二芳基吡唑是一种有前景的组氨酸激酶抑制骨架。我们合成了一组衍生物,发现它们抑制新月柄杆菌的组氨酸激酶CckA和沙门氏菌的PhoQ,但不抑制新月柄杆菌的DivJ;并且它们在革兰氏阴性和革兰氏阳性细菌菌株中均能抑制细菌生长。

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