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筛选与丙型肝炎病毒的RNA依赖性RNA聚合酶结合并在体外抑制病毒RNA合成的DNA适配体。

Selection of DNA aptamers that bind the RNA-dependent RNA polymerase of hepatitis C virus and inhibit viral RNA synthesis in vitro.

作者信息

Bellecave Pantxika, Andreola Marie-Line, Ventura Michel, Tarrago-Litvak Laura, Litvak Simon, Astier-Gin Thérèse

机构信息

UMR 5097 CNRS, Institut Fédératif de Recherches Pathologies Infectieuses et Cancer (IFR 66), Université Victor Segalen Bordeaux 2, 33076 Bordeaux cedex, France.

出版信息

Oligonucleotides. 2003;13(6):455-63. doi: 10.1089/154545703322860771.

Abstract

The RNA-dependent RNA polymerase (NS5B) of the hepatitis C virus (HCV) plays a key role in the life cycle of the virus. In order to find inhibitors of the HCV polymerase, we screened a library of 81 nucleotide (nt)-long synthetic DNA containing 35 random nucleotides by the Systematic Evolution of Ligands by Exponential enrichment (SELEX) approach. Thirty ligands selected for their binding affinity to the NS5B were classified into four groups on the basis of their sequence homologies. Among the selected molecules, two were able to inhibit in vitro the polymerase activity of the HCV NS5B. These aptamers appeared to be specific for HCV polymerase, as no inhibition of poliovirus 3D polymerase activity was observed. The binding and inhibitory potential of one aptamer (27v) was associated with the 35 nt-long variable region. This oligonucleotide displayed an apparent dissociation constant (K(d)) in the nanomolar range. Our results showed that it was able to compete with RNA templates corresponding to the 3'-ends of the (+) and the (-) HCV RNA for binding to the polymerase. The fact that a DNA aptamer could interfere with the binding of natural templates of the enzyme could help in performing structure-function analysis of the NS5B and might constitute a basis for further structure-based drug design of this crucial enzyme of HCV replication.

摘要

丙型肝炎病毒(HCV)的RNA依赖性RNA聚合酶(NS5B)在该病毒的生命周期中起关键作用。为了寻找HCV聚合酶的抑制剂,我们采用指数富集配体系统进化(SELEX)方法,筛选了一个包含81个核苷酸(nt)长的合成DNA文库,其中含有35个随机核苷酸。根据与NS5B的结合亲和力选择的30种配体,基于其序列同源性分为四组。在所选分子中,有两种能够在体外抑制HCV NS5B的聚合酶活性。这些适体似乎对HCV聚合酶具有特异性,因为未观察到对脊髓灰质炎病毒3D聚合酶活性的抑制。一种适体(27v)的结合和抑制潜力与35 nt长的可变区有关。该寡核苷酸的表观解离常数(K(d))在纳摩尔范围内。我们的结果表明,它能够与对应于(+)和(-)HCV RNA 3'末端的RNA模板竞争结合聚合酶。DNA适体能够干扰该酶天然模板的结合这一事实,有助于对NS5B进行结构-功能分析,并可能构成基于结构的HCV复制关键酶进一步药物设计的基础。

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