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致癌性微小RNA生物合成作为药物靶点:新型氨基糖苷类缀合物的构效关系研究

Oncogenic MicroRNAs Biogenesis as a Drug Target: Structure-Activity Relationship Studies on New Aminoglycoside Conjugates.

作者信息

Vo Duc Duy, Tran Thi Phuong Anh, Staedel Cathy, Benhida Rachid, Darfeuille Fabien, Di Giorgio Audrey, Duca Maria

机构信息

University of Nice Sophia Antipolis, Institute of Chemistry of Nice, UMR7272 CNRS, Parc Valrose, 06100, Nice, France.

University of Bordeaux, ARNA Laboratory, 33000, Bordeaux, France.

出版信息

Chemistry. 2016 Apr 4;22(15):5350-62. doi: 10.1002/chem.201505094. Epub 2016 Mar 1.

Abstract

MicroRNAs (miRNAs) are a recently discovered category of small RNA molecules that regulate gene expression at the post-transcriptional level. Accumulating evidence indicates that miRNAs are aberrantly expressed in a variety of human cancers and that the inhibition of these oncogenic miRNAs could find application in the therapy of different types of cancer. Herein, we describe the synthesis and biological evaluation of new small-molecule drugs that target oncogenic miRNAs production. In particular, we chose to target two miRNAs (i.e., miRNA-372 and -373) implicated in various types of cancer, such as gastric cancer. Their precursors (pre-miRNAs) are overexpressed in cancer cells and lead to mature miRNAs after cleavage of their stem-loop structure by the enzyme Dicer in the cytoplasm. Some of the newly synthesized conjugates can inhibit Dicer processing of the targeted pre-miRNAs in vitro with increased efficacy relative to our previous results (D.D. Vo et al., ACS Chem. Biol. 2014, 9, 711-721) and, more importantly, to inhibit proliferations of adenocarcinoma gastric cancer (AGS) cells overexpressing these miRNAs, thus representing promising leads for future drug development.

摘要

微小RNA(miRNA)是最近发现的一类小RNA分子,它们在转录后水平调节基因表达。越来越多的证据表明,miRNA在多种人类癌症中异常表达,抑制这些致癌性miRNA可能在不同类型癌症的治疗中得到应用。在此,我们描述了靶向致癌性miRNA产生的新型小分子药物的合成及生物学评价。具体而言,我们选择靶向两种与多种癌症(如胃癌)相关的miRNA(即miRNA - 372和 - 373)。它们的前体(前体miRNA)在癌细胞中过表达,并在细胞质中被Dicer酶切割其茎环结构后产生成熟的miRNA。一些新合成的缀合物在体外能够抑制靶向前体miRNA的Dicer加工,相对于我们之前的结果(D.D. Vo等人,《美国化学会化学生物学》,2014年,9卷,711 - 721页)具有更高的效力,更重要的是,能够抑制过表达这些miRNA的胃腺癌(AGS)细胞的增殖,因此代表了未来药物开发的有前景的先导化合物。

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