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Roles of Human Parainfluenza Virus Type 3 Bases 13 to 78 in Replication and Transcription: Identification of an Additional Replication Promoter Element and Evidence for Internal Transcription Initiation

机译:人类副流感病毒3型碱基13至78在复制和转录中的作用:额外的复制启动子元素的鉴定和内部转录起始的证据

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摘要

The genomic promoter of human parainfluenza virus type 3 (HPIV3) contains multiple cis-elements controlling transcription and replication. Previous work showed that regions 1 to 12 and 79 to 96 were critical in promoting replication of an HPIV3 minireplicon, while the intergenic sequence and N gene start signal (IS/Ngs, bases 49 to 61) were important for transcription. Because these data were collected primarily using point mutations, not every base from position 1 to 96 was analyzed, and some important control elements may have been missed. To clarify the role of bases 13 to 78 in transcription and replication, a series of mutations were made which collectively scanned this entire region. Mutation of bases 13 to 28 resulted in markedly decreased HPIV3 minireplicon replication, indicating these bases constitute an additional cis-element involved in the synthesis of the HPIV3 antigenomic RNA. The position dependence of the IS/Ngs was also examined. Analysis of mutants in which the IS/Ngs was shifted 5′ or 3′ showed that this segment could be moved without significantly disrupting transcription initiation. Additional mutants which contained two successive IS/Ngs segments were created to test whether the polymerase accessed the gene start signal by proceeding along the template 3′ to 5′ or by binding internally at the gene start signal. Based on analysis of the double gene start mutants, we propose a model of internal transcription initiation in which the polymerase enters the template at approximately the location of the natural N gene start but then scans the template bidirectionally to find a gene start signal and initiate transcription.
机译:人类副流感病毒3型(HPIV3)的基因组启动子包含多个控制转录和复制的顺式元件。先前的工作表明,区域1至12和79至96对于促进HPIV3微型复制子的复制至关重要,而基因间序列和N基因起始信号(IS / Ngs,碱基49至61)对于转录很重要。因为这些数据主要是使用点突变收集的,所以并不是从位置1到96的每个碱基都进行了分析,因此可能错过了一些重要的控制元件。为了阐明13至78位碱基在转录和复制中的作用,进行了一系列突变,共同扫描了整个区域。碱基13至28的突变导致HPIV3小复制子复制明显减少,表明这些碱基构成了参与HPIV3反基因组RNA合成的其他顺式元件。还检查了IS / Ng的位置依赖性。 IS / Ngs移位5'或3'的突变体的分析表明,该片段可以移动而不会显着破坏转录起始。产生了包含两个连续的IS / Ngs区段的另外的突变体,以测试聚合酶是否通过沿着模板3'至5'进行或通过内部结合基因起始信号来访问基因起始信号。基于对双基因起始突变体的分析,我们提出了一个内部转录起始模型,其中聚合酶在天然N基因起始位置附近进入模板,然后双向扫描模板以查找基因起始信号并启动转录。

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