Repository logo
 

Initiation, Elongation, and Realignment during Influenza Virus mRNA Synthesis.

Published version
Peer-reviewed

Type

Article

Change log

Authors

Te Velthuis, Aartjan JW  ORCID logo  https://orcid.org/0000-0002-5129-3953
Oymans, Judith 

Abstract

The RNA-dependent RNA polymerase (RdRp) of the influenza A virus replicates and transcribes the viral genome segments in the nucleus of the host cell. To transcribe these viral genome segments, the RdRp "snatches" capped RNA oligonucleotides from nascent host cell mRNAs and aligns these primers to the ultimate or penultimate nucleotide of the segments for the initiation of viral mRNA synthesis. It has been proposed that this initiation process is not processive and that the RdRp uses a prime-realign mechanism during transcription. Here we provide in vitro evidence for the existence of this transcriptional prime-realign mechanism but show that it functions efficiently only for primers that are short or cannot stably base pair with the template. In addition, we demonstrate that transcriptional elongation is dependent on the priming loop of the PB1 subunit of the RdRp. We propose that the prime-realign mechanism may be used to rescue abortive transcription initiation events or cope with sequence variation among primers. Overall, these observations advance our mechanistic understanding of how influenza A virus initiates transcription correctly and efficiently.IMPORTANCE Influenza A virus causes severe disease in humans and is considered a major global health threat. The virus replicates and transcribes its genome by using an enzyme called the RNA polymerase. To ensure that the genome is amplified faithfully and abundant viral mRNAs are made for viral protein synthesis, the viral RNA polymerase must transcribe the viral genome efficiently. In this report, we characterize a structure inside the polymerase that contributes to the efficiency of viral mRNA synthesis.

Description

Keywords

RNA-dependent RNA polymerase, influenza A virus, priming loop, realignment, replication, transcription, viral transcription, Animals, HEK293 Cells, Humans, Influenza A virus, RNA, Messenger, RNA, Viral, RNA-Dependent RNA Polymerase, Sf9 Cells, Transcription, Genetic, Viral Proteins

Journal Title

J Virol

Conference Name

Journal ISSN

0022-538X
1098-5514

Volume Title

92

Publisher

American Society for Microbiology
Sponsorship
Wellcome Trust (206579/Z/17/Z)