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一种计算机设计的黄酮类衍生物,6-氟-4'-羟基-3',5'-二甲氧基黄酮,在感染细胞中比更昔洛韦具有更强的抗人巨细胞病毒作用。

An in silico-designed flavone derivative, 6-fluoro-4'-hydroxy-3',5'-dimetoxyflavone, has a greater anti-human cytomegalovirus effect than ganciclovir in infected cells.

机构信息

Center for Basic Education, Faculty of Pharmaceutical Sciences, Hokuriku University, Ho-3 Kanagawa-machi, Kanazawa 920-1181, Japan.

Department of Microbiology and Immunology, Faculty of Pharmaceutical Sciences, Hokuriku University, Ho-3 Kanagawa-machi, Kanazawa 920-1181, Japan.

出版信息

Antiviral Res. 2018 Jun;154:10-16. doi: 10.1016/j.antiviral.2018.03.006. Epub 2018 Mar 17.

Abstract

A novel type of antiviral agent for human cytomegalovirus (HCMV) is required, because the appearance of ganciclovir (GCV) resistant viruses has been reported. Tricin (4',5,7-trihydroxy-3',5'-dimethoxyflavone) has been shown to suppress significantly HCMV replication in human embryonic lung (HEL) fibroblast cells. Recently, we revealed that the action of tricin is different from that of GCV and cyclin-dependent kinase 9 (CDK9) is one of the target proteins of tricin. These results suggested that tricin is considered as a novel type of anti-HCMV agent. However, its anti-HCMV potency is not greater than that of GCV. This study tried to develop novel compounds with much greater anti-HCMV activity than GCV. We first made modifications to tricin by introducing fluorine atom, and then performed molecular docking simulations using the designed compounds and CDK9. The calculated binding energies showed that 6F-tricin (6-fluoro-4'-hydroxy-3',5'-dimetoxyflavone) binds to CDK9 much stronger than tricin. Based on these results, 6F-tricin was synthesized, and then its anti-HCMV effect was analyzed in HEL cell cultures. As a result, 6F-tricin strongly suppressed HCMV replication in a dose-dependent manner. The anti-HCMV activity with a 50% effective concentration (EC) was 0.126 nM, corresponding to about 1/200 and 1/400 of EC of GCV (27.5 nM) and tricin (54.3 nM), respectively. Moreover, 6F-tricin had no cytotoxicity against HEL cells at concentrations up to 10 μM. We further performed detailed analysis on the amino acid contributions to the binding energies and found that the strong binding affinity for 6F-tricin to CDK9 is attributed to the specific binding orientation of 6F-tricin in the ATP-binding site. These results suggest that 6F-tricin is a promising candidate for anti-HCMV drug development.

摘要

需要开发一种新型的抗人巨细胞病毒(HCMV)的抗病毒药物,因为已经报道了更昔洛韦(GCV)耐药病毒的出现。三叶草素(4',5,7-三羟基-3',5'-二甲氧基黄酮)已被证明能显著抑制人胚肺(HEL)成纤维细胞中的 HCMV 复制。最近,我们发现三叶草素的作用不同于 GCV 的作用,细胞周期蛋白依赖性激酶 9(CDK9)是三叶草素的靶蛋白之一。这些结果表明,三叶草素被认为是一种新型的抗 HCMV 药物。然而,其抗 HCMV 效力并不大于 GCV。本研究试图开发比 GCV 具有更强抗 HCMV 活性的新型化合物。我们首先通过引入氟原子对三叶草素进行修饰,然后使用设计的化合物和 CDK9 进行分子对接模拟。计算的结合能表明,6F-三叶草素(6-氟-4'-羟基-3',5'-二甲氧基黄酮)与 CDK9 的结合强度远大于三叶草素。基于这些结果,合成了 6F-三叶草素,并在 HEL 细胞培养物中分析了其抗 HCMV 作用。结果表明,6F-三叶草素以剂量依赖性方式强烈抑制 HCMV 复制。具有 50%有效浓度(EC)的抗 HCMV 活性为 0.126 nM,分别约为 GCV(27.5 nM)和三叶草素(54.3 nM)EC 的 1/200 和 1/400。此外,6F-三叶草素在高达 10 μM 的浓度下对 HEL 细胞没有细胞毒性。我们进一步对氨基酸对结合能的贡献进行了详细分析,发现 6F-三叶草素与 CDK9 的强结合亲和力归因于 6F-三叶草素在 ATP 结合位点的特定结合取向。这些结果表明,6F-三叶草素是开发抗 HCMV 药物的有前途的候选药物。

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