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通过恶二唑/噻二唑和三唑类聚焦文库研究脲酶新型竞争性抑制剂的动力学

Kinetics of novel competitive inhibitors of urease enzymes by a focused library of oxadiazoles/thiadiazoles and triazoles.

作者信息

Amtul Zareen, Rasheed Maimoona, Choudhary Mohammad Iqbal, Supino Rosanna, Khan Khalid M

机构信息

International Center for Chemical Sciences, HEJ Research Institute of Chemistry, University of Karachi, Karachi 75270, Pakistan.

出版信息

Biochem Biophys Res Commun. 2004 Jul 2;319(3):1053-63. doi: 10.1016/j.bbrc.2004.05.036.

Abstract

Based on structure of the substrate of urease and for the purpose of designing pharmacophore models for urease inhibitors, which could be effective in physiological and pharmacological studies, a series of twenty-five 1,3,4-diazole-2(3H)-thiones-2(3H)-thiones, 1,3,4-diazoles-2(3H)-thiones, and 1,2,4-tri-3-thiones (OSNs) were designed, synthesized, and evaluated for various kinetic parameters of urease inhibition. OSNs inhibited the activity of urease(s) in a concentration dependent fashion. Dixon as well as Lineweaver-Burk plots and their secondary replots indicated that the nature of inhibition was of pure competitive type for all the 25 compounds. 5-[4-(hydroxy)phenyl]-1,3,4-thiadiazole-2(3H)-thione was found to be the most active one with a Ki value of 2 microM. The Ki values were increased with an increase in substrate concentrations. Apparently, OSNs employ a homologous mechanism of action by exploiting a common transition catalysis state and acting as ligand chelators to form octahedral complexes with the urease enzymes in an orientation-specific mode. The inhibition was slightly potentiated by lower pH and not abolished in the presence of NH2OH (a scavenger of histidine residue). Because of their safe profile in the genotoxic assay, they may be pursued in the near future for human testing

摘要

基于脲酶底物的结构,为了设计对脲酶抑制剂有效的药效团模型,以便在生理学和药理学研究中发挥作用,设计、合成了一系列25种1,3,4 - 二唑 - 2(3H)-硫酮、1,3,4 - 二唑 - 2(3H)-硫酮和1,2,4 - 三唑 - 3 - 硫酮(OSNs),并对其脲酶抑制的各种动力学参数进行了评估。OSNs以浓度依赖性方式抑制脲酶的活性。Dixon以及Lineweaver - Burk图及其二次重绘图表明,所有25种化合物的抑制性质均为纯竞争性类型。发现5 - [4 - (羟基)苯基] - 1,3,4 - 噻二唑 - 2(3H)-硫酮是活性最高的一种,其Ki值为2 microM。Ki值随底物浓度的增加而增加。显然,OSNs通过利用共同的过渡催化状态采用同源作用机制,并作为配体螯合剂以定向特异性模式与脲酶形成八面体络合物。较低的pH值略微增强了抑制作用,并且在存在NH2OH(组氨酸残基的清除剂)的情况下抑制作用并未消除。由于它们在遗传毒性试验中的安全性,在不久的将来可能会进行人体试验。

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