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设计、合成及评估 WC5 类似物作为人巨细胞病毒立即早期 2 蛋白抑制剂,该蛋白是抗 HCMV 治疗的有前途的靶点。

Design, synthesis, and evaluation of WC5 analogues as inhibitors of human cytomegalovirus Immediate-Early 2 protein, a promising target for anti-HCMV treatment.

机构信息

Department of Chemistry and Technology of Drugs, University of Perugia, 06123 Perugia, Italy.

出版信息

ChemMedChem. 2013 Aug;8(8):1403-14. doi: 10.1002/cmdc.201300106. Epub 2013 Jun 11.

Abstract

Although human cytomegalovirus (HCMV) infection is mostly asymptomatic for immunocompetent individuals, it remains a serious threat for those who are immunocompromised, in whom it is associated with various clinical manifestations. The therapeutic utility of the few available anti-HCMV drugs is limited by several drawbacks, including cross-resistance due to their common mechanism of action, i.e., inhibition of viral DNA polymerase. Therefore, compounds that target other essential viral events could overcome this problem. One example of this is the 6-aminoquinolone WC5, which acts by directly blocking the transactivation of essential viral Early genes by the Immediate-Early 2 (IE2) protein. In this study, the quinolone scaffold of the lead compound WC5 was investigated in depth, defining more suitable substituents for each of the scaffold positions explored and identifying novel, potent and nontoxic compounds. Some compounds showed potent anti-HCMV activity by interfering with IE2-dependent viral E gene expression. Among them, naphthyridone 1 was also endowed with potent anti-HIV activity in latently infected cells. Their antiviral profile along with their innovative mechanism of action make these anti-HCMV quinolones a very promising class of compounds to be exploited for more effective antiviral therapeutic treatment.

摘要

虽然人类巨细胞病毒(HCMV)感染在免疫功能正常的个体中大多无症状,但它仍是免疫功能低下者的严重威胁,可引起各种临床表现。少数可用的抗 HCMV 药物的治疗效果受到多种缺陷的限制,包括由于其共同的作用机制(即抑制病毒 DNA 聚合酶)而导致的交叉耐药性。因此,针对其他必需病毒事件的化合物可以克服这个问题。这方面的一个例子是 6-氨基喹啉 WC5,它通过直接阻断立即早期 2(IE2)蛋白对必需病毒早期基因的转录激活来发挥作用。在这项研究中,深入研究了先导化合物 WC5 的喹啉骨架,确定了每个骨架位置更合适的取代基,并鉴定了新型、有效和无毒的化合物。一些化合物通过干扰 IE2 依赖性病毒 E 基因表达显示出强大的抗 HCMV 活性。其中,萘啶酮 1 还具有潜伏感染细胞中抗 HIV 的活性。它们的抗病毒特性及其创新的作用机制使这些抗 HCMV 喹啉类化合物成为非常有前途的一类化合物,可用于更有效的抗病毒治疗。

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