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鉴定水泡性口炎病毒mRNA转录所需的上游序列元件。

Identification of an upstream sequence element required for vesicular stomatitis virus mRNA transcription.

作者信息

Hinzman Edward E, Barr John N, Wertz Gail W

机构信息

Department of Microbiology, University of Alabama School of Medicine, Birmingham, Alabama 35294, USA.

出版信息

J Virol. 2002 Aug;76(15):7632-41. doi: 10.1128/jvi.76.15.7632-7641.2002.

Abstract

Vesicular stomatitis virus (VSV), the prototypic rhabdovirus, has a nonsegmented negative-sense RNA genome with five genes flanked by 3' leader and 5' trailer sequences. Transcription of VSV mRNAs is obligatorily sequential, starting from a single 3' polymerase entry site, and termination of an upstream mRNA is essential for transcription of a downstream gene. cis-acting signals for transcription of VSV mRNAs are present within the leader region, at the leader-N junction, and at the internal gene junctions. The gene junctions of VSV consist of a conserved 23-nucleotide region that includes the gene end sequence of the upstream gene, 3'-AUACU7-5', a nontranscribed intergenic dinucleotide, 3'-G/CA-5', and the gene start sequence, 3'-UUGUCNNUAG-5', at the beginning of the gene immediately downstream. Previous work has shown that the gene end sequence and intergenic region are sufficient to signal polyadenylation and termination of VSV transcripts. Mutagenesis of the gene start sequence has determined the importance of this region in the processes of initiation and 5'-end modification of mRNAs. However, because the gene end sequence is positioned directly upstream of the gene start sequence in the gene junction, and because of the requirement for termination of the upstream gene prior to transcription of the downstream gene, it has not been possible to investigate whether the gene end sequence contributes to transcription of the downstream gene. In this study, we inserted an additional gene end sequence upstream of the gene junction in a subgenomic replicon of VSV, which extended the intergenic region from 2 to 88 nucleotides. This duplication of termination signals allowed us to separate the signals required for termination from those required for initiation. We investigated the effect that the upstream gene end sequences had on downstream mRNA transcription. Our data show that the U7 tract of the upstream gene end sequence is necessary for optimal transcription of the downstream gene, independent of its role in termination of the upstream gene. Altering the sequence or changing the length of the U tract directly upstream of the gene start sequence significantly decreased transcription of the downstream gene. These results show that the U tract is a multifunctional region that is required not only for polyadenylation and termination of the upstream mRNA but also for efficient transcription of the downstream gene.

摘要

水泡性口炎病毒(VSV)是弹状病毒的原型,具有一个非节段性的负链RNA基因组,其五个基因两侧分别是3'前导序列和5'尾随序列。VSV mRNA的转录必须按顺序进行,从单个3'聚合酶进入位点开始,上游mRNA的终止对于下游基因的转录至关重要。VSV mRNA转录的顺式作用信号存在于前导区域、前导-N连接处以及内部基因连接处。VSV的基因连接处由一个保守的23个核苷酸区域组成,该区域包括上游基因的基因末端序列3'-AUACU7-5'、一个非转录的基因间二核苷酸3'-G/CA-5'以及紧邻下游基因起始处的基因起始序列3'-UUGUCNNUAG-5'。先前的研究表明,基因末端序列和基因间区域足以作为VSV转录本多聚腺苷酸化和终止的信号。对基因起始序列的诱变已确定了该区域在mRNA起始和5'端修饰过程中的重要性。然而,由于基因末端序列位于基因连接处基因起始序列的直接上游,并且由于下游基因转录之前上游基因需要终止,因此无法研究基因末端序列是否对下游基因的转录有贡献。在本研究中,我们在VSV的一个亚基因组复制子的基因连接处上游插入了一个额外的基因末端序列,这使得基因间区域从2个核苷酸扩展到了88个核苷酸。这种终止信号的重复使我们能够将终止所需的信号与起始所需的信号分开。我们研究了上游基因末端序列对下游mRNA转录的影响。我们的数据表明,上游基因末端序列的U7序列对于下游基因的最佳转录是必需的,这与其在上游基因终止中的作用无关。改变基因起始序列上游U序列的序列或长度会显著降低下游基因的转录。这些结果表明,U序列是一个多功能区域,不仅是上游mRNA多聚腺苷酸化和终止所必需的,也是下游基因高效转录所必需的。

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