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Hexamer phasing governs transcription initiation in the 3 '-leader of Ebola virus

机译:六聚逐步治理埃博拉病毒的3' - 标线中的转录开始

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The genomic, bipartite replication promoter of Ebola virus (EBOV) consists of elements 1 (PE1) and 2 (PE2). PE1 (55 nt at the 3'-terminus) is separated from PE2 (harboring eight 3'-UN5 hexamers) by the transcription start sequence (TSS) of the first nucleoprotein (NP) gene plus a spacer sequence. Insertions or deletions in the spacer were reported to support genome replication if comprising 6 or 12, but not 1/2/3/5/9 nt. This gave rise to the formulation of the "rule of 6" for the EBOV replication promoter. Here, we studied the impact of such hexamer phasing on viral transcription using a series of replication-competent and -deficient monocistronic minigenomes, in which the spacer of the NP gene was mutated or replaced with that of internal EBOV genes and mutated variants thereof. Beyond reporter gene assays, we conducted qRT-PCR to determine the levels of mRNA, genomic and antigenomic RNA. We demonstrate that hexamer phasing is also essential for viral transcription, that UN5 hexamer periodicity extends into PE1 and that the spacer region can be expanded by 48 nt without losses of transcriptional activity. Making the UN5 hexamer phasing continuous between PE1 and PE2 enhanced the efficiency of transcription and replication. We show that the 2nt preceding the TSS are essential for transcription. We further propose a role for UN5 hexamer phasing in positioning NP during initiation of RNA synthesis, or in dissociation/reassociation of NP from the template RNA strand while threading the RNA through the active site of the elongating polymerase during replication and transcription.
机译:埃博拉病毒(EBOV)的基因组,二分复制启动子由元件1(PE1)和2(PE2)组成。 PE1(3'-末端的55nt)与第一核蛋白(NP)基因的转录开始序列(TSS)与PE2(NP)基因加上间隔序列分离出PE2(含8个3'-UN5六烷烃)。据报道,如果包含6或12,但不是1/2/3/5/9 nt,则报告间隔物中的插入或缺失以支持基因组复制。这使得EBOV复制促进剂的“6”的制定产生了。在这里,我们研究了使用一系列复制竞争力和分组的单锁相色谱缩小细胞突变脉细胞对这些六聚阶段对病毒转录的影响,其中NP基因的间隔突变或用内部EBOV基因和其突变变体替换。除了报道基因测定之外,我们进行了QRT-PCR以确定mRNA,基因组和抗脑瘤菌的水平。我们证明六聚阶段对于病毒转录也是必不可少的,即UN5六聚周期性延伸到PE1中,并且间隔区可以扩展48nT而不会损失转录活性。使UN5 Hexamer在PE1和PE2之间进行连续,增强了转录和复制的效率。我们表明,在TSS之前的2NT对于转录至关重要。我们进一步提出了在RNA合成起始期间在定位NP期间的UN5六聚体相位的作用,或者在复制和转录期间通过伸长聚合酶的活性位点穿过伸长聚合酶的活性位点的同时在模板RNA链中解离/重新分配NP。

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