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Strategies for recognition of stem-loop RNA structures by synthetic ligands: Application to the HIV-1 frameshift stimulatory sequence

机译:合成配体识别茎环RNA结构的策略:在HIV-1移码刺激序列中的应用

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摘要

Production of the Gag-Pol polyprotein in human immunodeficiency virus (HIV) requires a -1 ribosomal frameshift, which is directed by a highly conserved RNA stem-loop. Building on our discovery of a set of disulfide-containing peptides that bind this RNA, we describe medicinal chemistry efforts designed to begin to understand the structure-activity relationships and RNA sequence-selectivity relationships associated with these compounds. Additionally, we have prepared analogues incorporating an olefin or saturated hydrocarbon bioisostere of the disulfide moiety, as a first step toward enhancing biostability. The olefin-containing compounds exhibit affinity comparable to the lead disulfide and, importantly, have no discernible toxicity when incubated with human fibroblasts at concentrations up to 1 mM.
机译:人类免疫缺陷病毒(HIV)中Gag-Pol多蛋白的生产需要-1核糖体移码,这是由高度保守的RNA茎环指导的。基于我们发现的一组结合该RNA的含二硫键的肽,我们描述了旨在开始理解与这些化合物相关的结构活性关系和RNA序列选择性关系的药物化学工作。另外,我们已经准备了掺入二硫化物部分的烯烃或饱和烃生物等排体的类似物,作为提高生物稳定性的第一步。含烯烃的化合物显示出与二硫化铅可比的亲和力,重要的是,与浓度高达1 mM的人成纤维细胞一起孵育时,没有明显的毒性。

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