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新型基于苯并噻唑的嘧啶磺酰胺支架作为新型抗病毒剂和热休克蛋白90α抑制剂的高效合成及对接研究

Efficient Synthesis and Docking Studies of Novel Benzothiazole-Based Pyrimidinesulfonamide Scaffolds as New Antiviral Agents and Hsp90α Inhibitors.

作者信息

Azzam Rasha A, Osman Rokia R, Elgemeie Galal H

机构信息

Chemistry Department, Faculty of Science, Helwan University, Cairo 11795, Egypt.

出版信息

ACS Omega. 2020 Jan 9;5(3):1640-1655. doi: 10.1021/acsomega.9b03706. eCollection 2020 Jan 28.

Abstract

A series of novel substituted 2-pyrimidylbenzothiazoles incorporating either sulfonamide moieties or the amino group at C2 of the pyrimidine ring were synthesized and evaluated for its antiviral potency. The novel synthesis of the ring system was carried out by reacting guanidine or -arylsulfonated guanidine with different derivatives of ylidene benzothiazole based on Michael addition pathways. The antiviral activity of the newly synthesized compounds was examined by a plaque reduction assay against HSV-1, CBV4, HAV HM 175, HCVcc genotype 4 viruses, and HAdV7. In the case of HSV-1, it was determined that 5 out of the 21 synthesized compounds exhibited superior viral reduction in the range of 70-90% with significant IC, CC, and SI values as compared with acyclovir. In the case of CBV4, nine compounds have shown more than 50% reduction. Comparable results were obtained for seven of these synthesized compounds when evaluated against HAV with only a couple of them showing 50% reduction or more against HCVcc genotype 4. Remarkably, one compound, , has shown broad action against all five examined viruses, rendering it as potentially an effective antiviral agent. The five potent compounds , , , , and against HSV-1 have also presented inhibitory activity against the Hsp90α protein with IC in the range of 4.87-10.47 μg/mL. Interestingly, a combination of the potent synthesized compounds with acyclovir led to IC values lower than that of acyclovir alone. The potent compounds , , , and were also docked inside the active site of Hsp90α to assess the interaction pattern between the tested compounds and the active site of the protein.

摘要

合成了一系列新型的取代2-嘧啶基苯并噻唑,这些化合物在嘧啶环的C2位上引入了磺酰胺基团或氨基,并对其抗病毒活性进行了评估。基于迈克尔加成途径,通过胍或芳基磺化胍与亚甲基苯并噻唑的不同衍生物反应,实现了该环系的新合成方法。通过噬斑减少试验,检测了新合成化合物对单纯疱疹病毒1型(HSV-1)、柯萨奇病毒B4型(CBV4)、甲型肝炎病毒HM175株(HAV HM 175)、丙型肝炎病毒cc基因型4型(HCVcc genotype 4)病毒和腺病毒7型(HAdV7)的抗病毒活性。对于HSV-1,在21种合成化合物中,有5种表现出优异的病毒抑制效果,抑制率在70%-90%之间,与阿昔洛韦相比,其IC、CC和SI值均具有显著性。对于CBV4,有9种化合物表现出超过50%的抑制率。在评估这些合成化合物对HAV的抗病毒活性时,有7种化合物得到了类似的结果,只有少数几种化合物对HCVcc基因型4型病毒的抑制率达到50%或更高。值得注意的是,一种化合物对所有5种检测病毒均表现出广泛的活性,使其有可能成为一种有效的抗病毒药物。5种对HSV-1有效的化合物 、 、 、 和 对热休克蛋白90α(Hsp90α)蛋白也具有抑制活性,IC值在4.87-10.47μg/mL范围内。有趣的是,将有效的合成化合物与阿昔洛韦联合使用,导致IC值低于单独使用阿昔洛韦时的值。还将有效的化合物 、 、 和 对接至Hsp90α的活性位点,以评估受试化合物与该蛋白活性位点之间的相互作用模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2198/6990646/a645cdc7842c/ao9b03706_0016.jpg

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