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Carboxylate-functionalized foldamer inhibitors of HIV-1 integrase and Topoisomerase 1: artificial analogues of DNA mimic proteins

机译:羧酸官能化的HIV-1整合酶和拓扑异构酶1:DNA模拟蛋白的人工类似物

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摘要

Inspired by DNA mimic proteins, we have introduced aromatic foldamers bearing phosphonate groups as synthetic mimics of the charge surface of B-DNA and competitive inhibitors of some therapeutically relevant DNA-binding enzymes: the human DNA Topoisomerase 1 (Top1) and the human HIV-1 integrase (HIV-1 IN). We now report on variants of these anionic foldamers bearing carboxylates instead of phosphonates. Several new monomers have been synthesized with protecting groups suitable for solid phase synthesis (SPS). Six hexadecaamides have been prepared using SPS. Proof of their resemblance to B-DNA was brought by the first crystal structure of one of these DNA-mimic foldamers in its polyanionic form. While some of the foldamers were found to be as active as, or even more active than, the original phosphonate oligomers, others had no activity at all or could even stimulate enzyme activity in vitro. Some foldamers were found to have differential inhibitory effects on the two enzymes. These results demonstrate a strong dependence of inhibitory activity on foldamer structure and charge distribution. They open broad avenues for the development of new classes of derivatives that could inhibit the interaction of specific proteins with their DNA target thereby influencing the cellular pathways in which they are involved.
机译:受DNA模拟蛋白的启发,我们引入了含有膦酸盐基团的芳族粘膜体作为B-DNA的电荷表面的合成模拟,以及一些治疗相关的DNA结合酶的竞争性抑制剂:人DNA拓扑酶1(TOP1)和人类艾滋病毒 - 1整体酶(HIV-1 IN)。我们现在报告这些阴离子卷曲物含有羧酸盐代替膦酸盐的变体。已经合成了几种新的单体,其保护基团适于固相合成(SPS)。使用SPS制备六个十六烷基酰胺。它们对B-DNA相似的证据是通过其中这些DNA模拟物的第一晶体结构以其多变形形式带来。虽然发现一些粘合剂与原始的膦酸酯低聚物一样活跃或甚至更活跃,但是其他磷酸寡聚体根本没有任何活性,或者甚至可以在体外刺激酶活性。发现一些粘合剂对两种酶具有差异抑制作用。这些结果表明了抑制活性对粘合剂结构和电荷分布的强烈依赖性。他们开辟了广泛的途径,以发展新的衍生物,可以抑制特定蛋白质与其DNA靶标的相互作用,从而影响它们所涉及的细胞途径。

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  • 来源
    《Nucleic Acids Research》 |2019年第11期|共11页
  • 作者单位

    Ludwig Maximilians Univ Munchen Dept Pharm D-81377 Munich Germany;

    Univ Bordeaux CNRS Bordeaux Inst Natl Polytech Inst Europeen Chim &

    Biol CBMN UMR 5248 F-33600 Pessac France;

    Univ Bordeaux CNRS Bordeaux Inst Natl Polytech Inst Europeen Chim &

    Biol CBMN UMR 5248 F-33600 Pessac France;

    Univ Bordeaux CNRS Bordeaux Inst Natl Polytech Inst Europeen Chim &

    Biol CBMN UMR 5248 F-33600 Pessac France;

    Ludwig Maximilians Univ Munchen Dept Pharm D-81377 Munich Germany;

    Sanofi Rech &

    Dev F-34184 Montpellier France;

    Sanofi Rech &

    Dev F-34184 Montpellier France;

    Sanofi Rech &

    Dev F-34184 Montpellier France;

    Univ Bordeaux CNRS Lab Microbiol Fondamentale &

    Pathogenicite UMR 5234 F-33146 Bordeaux France;

    Inst Rech Canc Montpellier INSERM U1194 F-34298 Montpellier France;

    Ludwig Maximilians Univ Munchen Dept Pharm D-81377 Munich Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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