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线性喷他脒类似物的类药性及其对人乙醚相关基因钾通道的影响——与结构特征的相关性

Drug-likeness of linear pentamidine analogues and their impact on the hERG K channel - correlation with structural features.

作者信息

Żołek Teresa, Qile Muge, Kaźmierczak Paweł, Bloothooft Meye, van der Heyden Marcel A G, Maciejewska Dorota

机构信息

Department of Organic Chemistry, Faculty of Pharmacy, Medical University of Warsaw Banacha 1 02-097 Warsaw Poland

Department of Medical Physiology, Division Heart & Lungs, University Medical Center Utrecht Utrecht The Netherlands.

出版信息

RSC Adv. 2019 Dec 2;9(66):38355-38371. doi: 10.1039/c9ra08404e. eCollection 2019 Nov 25.

Abstract

This work presents drug-likeness and the cardiotoxicity profiles of six potent pentamidine analogs 1-6 and three new compounds 7-9 as chemotherapeutics for therapy of pneumonia. A combination of experimental and computational approaches was used in the cardiotoxicity examination. The hERG trafficking and functionality of the hERG currents were tested by western blot analyses, immunofluorescent staining procedures, and patch-clamp electrophysiological assays. Cardiotoxicity combined with blocking the hERG K channel was predicted, and then simulated by docking to the CSM-TM model 732 protein. Location of pentamidines in the proximity of Leu622, Thr623, Ser649, Tyr652, Ala653, and Phe656, and the high energies of interactions were in accordance with probable blocking of the hERG channel. However, in the biochemical experiments, no significant changes in densities and a minor effect on hERG maturation were observed. Predicted metabolic transformation of pentamidines with S atoms in the aliphatic linker leads to oxidation of one S atom, but those with the phenyl sulfanilide moiety can be oxidized to chinones. The tested pentamidines characterized by the presence of sulfur atoms or sulfanilide groups, have favorable drug-likeness parameters and are promising lead structures in the development of new potent chemotherapeutics against PJP.

摘要

这项研究展示了六种强效喷他脒类似物1-6和三种新化合物7-9作为治疗肺炎的化学治疗药物的类药性和心脏毒性概况。在心脏毒性检查中采用了实验和计算方法相结合的方式。通过蛋白质免疫印迹分析、免疫荧光染色程序和膜片钳电生理测定法对hERG转运和hERG电流的功能进行了测试。预测了与阻断hERG钾通道相关的心脏毒性,然后通过与CSM-TM模型732蛋白对接进行模拟。喷他脒位于Leu622、Thr623、Ser649、Tyr652、Ala653和Phe656附近,且相互作用能量较高,这与hERG通道可能被阻断的情况相符。然而,在生化实验中,未观察到密度有显著变化,且对hERG成熟的影响较小。脂肪族连接基中带有S原子的喷他脒预测代谢转化会导致一个S原子氧化,但带有苯磺胺部分的喷他脒可被氧化为醌。所测试的以存在硫原子或磺胺基团为特征的喷他脒具有良好的类药性参数,是开发新型强效抗肺孢子菌肺炎化学治疗药物的有前景的先导结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e62/9082326/6ba96734399e/c9ra08404e-f1.jpg

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