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Synthesis Bindingand Antiviral Properties of PotentCore-Extended Naphthalene Diimides Targeting the HIV-1 LongTerminal Repeat Promoter G-Quadruplexes

机译:合成结合和抗病毒特性针对HIV-1长的核心扩展萘二酰亚胺末端重复启动子G-四链体

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摘要

We have previously reported that stabilization of the G-quadruplex structures in the HIV-1 long terminal repeat (LTR) promoter suppresses viral transcription. Here we sought to develop new G-quadruplex ligands to be exploited as antiviral compounds by enhancing binding toward the viral G-quadruplex structures. We synthesized naphthalene diimide derivatives with a lateral expansion of the aromatic core. The new compounds were able to bind/stabilize the G-quadruplex to a high extent, and some of them displayed clear-cut selectivity toward the viral G-quadruplexes with respect to the human telomeric G-quadruplexes. This feature translated into low nanomolar anti-HIV-1 activity toward two viral strains and encouraging selectivity indexes. The selectivity depended on specific recognition of LTR loop residues; the mechanism of action was ascribed to inhibition of LTR promoter activity in cells. This is the first example of G-quadruplex ligands that show increased selectivity toward the viral G-quadruplexes and display remarkable antiviral activity.
机译:我们以前曾报道过,HIV-1长末端重复序列(LTR)启动子中G-四链体结构的稳定抑制了病毒转录。在这里,我们试图通过增强与病毒G-四链体结构的结合来开发新的G-四链体配体,以用作抗病毒化合物。我们合成了带有芳香核侧向膨胀的萘二酰亚胺衍生物。新化合物能够高度结合/稳定G-四链体,其中一些相对于人端粒G-四链体显示出对病毒G-四链体的明确选择性。此功能转化为对两种病毒株具有较低的纳摩尔抗HIV-1活性,并提高了选择性指数。选择性取决于LTR环残基的特异性识别。作用机理归因于细胞中LTR启动子活性的抑制。这是G-四链体配体的第一个实例,其显示出对病毒G-四链体的选择性增加并且显示出显着的抗病毒活性。

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