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通过RNA依赖性RNA聚合酶在体外合成新型产物。

Synthesis of novel products in vitro by an RNA-dependent RNA polymerase.

作者信息

Song C, Simon A E

机构信息

Department of Biochemistry and Molecular Biology, University of Massachusetts at Amherst 01003, USA.

出版信息

J Virol. 1995 Jul;69(7):4020-8. doi: 10.1128/JVI.69.7.4020-4028.1995.

Abstract

RNA-dependent RNA polymerase from turnip crinkle virus-infected turnip transcribes both strands of a virus-associated satellite RNA, sat-RNA C (356 bases), in vitro. While both plus- and minus-strand sat-RNA C can direct the synthesis of full-length complementary-strand products, transcription of minus-strand RNA also generates two non-template-sized products, L-RNA and S-RNA (C. Song and A. E. Simon, Proc. Natl. Acad. Sci. USA 91:8792-8796, 1994). Here we report that synthesis of L-RNA and S-RNA results from terminal elongation of the 3' end of the template. L-RNA has a panhandle structure and is composed of minus-strand template covalently linked to newly synthesized RNA complementary to its 5' 190 bases. S-RNA is composed of template covalently linked to its full-length complementary strand. All minus-strand templates tested yielded S-RNA. However, synthesis of L-RNA was affected by deletion of the 3' end of the minus-strand template or several internal regions and base alterations near the 5' end or in an internal sequence immediately upstream from the template-product junction that could potentially form a heteroduplex with the 3' end. Furthermore, mutations that disrupted or restored a stem-loop involved in RNA recombination in vivo affected the level of L-RNA produced in vitro, suggesting that the mechanisms for intramolecular formation of panhandle RNAs and intermolecular RNA recombination involve similar features.

摘要

芜菁皱缩病毒感染的芜菁中的RNA依赖性RNA聚合酶在体外转录病毒相关卫星RNA的两条链,即sat-RNA C(356个碱基)。虽然正链和负链sat-RNA C都能指导全长互补链产物的合成,但负链RNA的转录也会产生两种非模板大小的产物,L-RNA和S-RNA(C.宋和A.E.西蒙,《美国国家科学院院刊》91:8792 - 8796,1994)。在此我们报道,L-RNA和S-RNA的合成是由模板3'端的末端延伸导致的。L-RNA具有一个锅柄结构,由与新合成的、与其5'端190个碱基互补的RNA共价连接的负链模板组成。S-RNA由与全长互补链共价连接的模板组成。所有测试的负链模板都产生了S-RNA。然而,L-RNA的合成受到负链模板3'端缺失或几个内部区域以及5'端附近或模板-产物连接处上游紧邻内部序列中碱基改变的影响,这些改变可能与3'端形成异源双链体。此外,破坏或恢复体内RNA重组中涉及的茎环的突变影响了体外产生的L-RNA水平,这表明锅柄状RNA分子内形成机制和分子间RNA重组机制涉及相似特征。

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