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体外脊髓灰质炎病毒RNA合成过程中宿主因子诱导的模板修饰

Host factor-induced template modification during synthesis of poliovirus RNA in vitro.

作者信息

Hey T D, Richards O C, Ehrenfeld E

出版信息

J Virol. 1987 Mar;61(3):802-11. doi: 10.1128/JVI.61.3.802-811.1987.

Abstract

Poliovirus RNA polymerase, 3Dpol, transcribes poliovirus RNA in vitro in the presence of a host factor (HF) preparation from uninfected HeLa cells to yield heterogeneous-size product RNAs. The products include some molecules larger than the template that represent self-primed elongations of the template from a 3'-terminal hairpin. We showed that transcription proceeded through the formation of a modified RNA intermediate that was generated by nucleolytic cleavage of the template by HF in the absence of nucleoside triphosphates. Cleavage resulted in the loss of the original poly(A) 3' end and the generation of new, heterogeneous 3' ends that formed self-priming structures that could then be elongated by 3Dpol or reverse transcriptase. The two stages of the reaction, (i) cleavage to yield self-priming templates and (ii) subsequent chain elongation to yield heterogeneous-size products up to nearly dimer length, could be separated. RNAs whose original 3' ends were chemically oxidized so as to prevent chain elongation showed no reduction in template activity after preincubation with HF. We conclude that an HF preparation that contains a low level of nuclease activity is sufficient to activate RNA templates for transcription by 3Dpol to generate up to apparent dimer-length products. This reaction likely has little relevance to the mechanism of poliovirus RNA replication in vivo. It is likely that numerous other factors or activities, in addition to 3Dpol, would also result in transcription of poliovirus RNA in vitro.

摘要

脊髓灰质炎病毒RNA聚合酶3Dpol在存在来自未感染的HeLa细胞的宿主因子(HF)制剂的情况下,可在体外转录脊髓灰质炎病毒RNA,产生大小各异的产物RNA。这些产物包括一些比模板大的分子,它们代表了模板从3'-末端发夹处的自身引发延伸。我们发现转录是通过形成一种修饰的RNA中间体进行的,该中间体是在没有核苷三磷酸的情况下由HF对模板进行核酸酶切割产生的。切割导致原始poly(A) 3'末端的丢失以及新的、异质的3'末端的产生,这些末端形成了自身引发结构,然后可被3Dpol或逆转录酶延伸。反应的两个阶段,即(i)切割产生自身引发模板,以及(ii)随后的链延伸产生大小各异的产物直至接近二聚体长度,可以分开。其原始3'末端经化学氧化以防止链延伸的RNA,在与HF预孵育后模板活性没有降低。我们得出结论,含有低水平核酸酶活性的HF制剂足以激活RNA模板,使其被3Dpol转录以产生高达明显二聚体长度的产物。该反应可能与脊髓灰质炎病毒RNA在体内的复制机制几乎没有关联。除了3Dpol之外,很可能还有许多其他因素或活性也会导致脊髓灰质炎病毒RNA在体外转录。

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