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一种源自人La蛋白RNA识别基序2的肽与丙型肝炎病毒内部核糖体进入位点结合,阻止核糖体组装,并抑制翻译的内部起始。

A peptide derived from RNA recognition motif 2 of human la protein binds to hepatitis C virus internal ribosome entry site, prevents ribosomal assembly, and inhibits internal initiation of translation.

作者信息

Pudi Renuka, Ramamurthy Sudhamani S, Das Saumitra

机构信息

Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore.

出版信息

J Virol. 2005 Aug;79(15):9842-53. doi: 10.1128/JVI.79.15.9842-9853.2005.

Abstract

Human La protein is known to interact with hepatitis C virus (HCV) internal ribosome entry site (IRES) and stimulate translation. Previously, we demonstrated that mutations within HCV SL IV lead to reduced binding to La-RNA recognition motif 2 (RRM2) and drastically affect HCV IRES-mediated translation. Also, the binding of La protein to SL IV of HCV IRES was shown to impart conformational alterations within the RNA so as to facilitate the formation of functional initiation complex. Here, we report that a synthetic peptide, LaR2C, derived from the C terminus of La-RRM2 competes with the binding of cellular La protein to the HCV IRES and acts as a dominant negative inhibitor of internal initiation of translation of HCV RNA. The peptide binds to the HCV IRES and inhibits the functional initiation complex formation. An Huh7 cell line constitutively expressing a bicistronic RNA in which both cap-dependent and HCV IRES-mediated translation can be easily assayed has been developed. The addition of purified TAT-LaR2C recombinant polypeptide that allows direct delivery of the peptide into the cells showed reduced expression of HCV IRES activity in this cell line. The study reveals valuable insights into the role of La protein in ribosome assembly at the HCV IRES and also provides the basis for targeting ribosome-HCV IRES interaction to design potent antiviral therapy.

摘要

已知人La蛋白可与丙型肝炎病毒(HCV)内部核糖体进入位点(IRES)相互作用并刺激翻译。此前,我们证明HCV SL IV内的突变会导致与La-RNA识别基序2(RRM2)的结合减少,并极大地影响HCV IRES介导的翻译。此外,La蛋白与HCV IRES的SL IV结合可使RNA发生构象改变,从而促进功能性起始复合物的形成。在此,我们报道一种源自La-RRM2 C末端的合成肽LaR2C可与细胞内La蛋白和HCV IRES的结合竞争,并作为HCV RNA内部翻译起始的显性负性抑制剂。该肽与HCV IRES结合并抑制功能性起始复合物的形成。已构建出一种Huh7细胞系,其组成性表达一种双顺反子RNA,在该细胞系中可轻松检测帽依赖性翻译和HCV IRES介导的翻译。添加可将该肽直接递送至细胞内的纯化TAT-LaR2C重组多肽后,该细胞系中HCV IRES活性的表达降低。该研究揭示了La蛋白在HCV IRES核糖体组装中的作用的重要见解,也为靶向核糖体-HCV IRES相互作用以设计有效的抗病毒疗法提供了基础。

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