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Sub-genomic flaviviral RNA elements increase the stability and abundance of recombinant AAV vector transcripts.

Publication ,  Journal Article
Meganck, RM; Ogurlu, R; Liu, J; Moller-Tank, S; Tse, V; Blondel, LO; Rosales, A; Hall, AC; Vincent, HA; Moorman, NJ; Marzluff, WF; Asokan, A
Published in: J Virol
August 20, 2024

UNLABELLED: Many viruses have evolved structured RNA elements that can influence transcript abundance and translational efficiency, and help evade host immune factors by hijacking cellular machinery during replication. Here, we evaluated the functional impact of sub-genomic flaviviral RNAs (sfRNAs) known to stall exoribonuclease activity, by incorporating these elements into recombinant adeno-associated viral (AAV) genome cassettes. Specifically, sfRNAs from Dengue, Zika, Japanese Encephalitis, Yellow Fever, Murray Valley Encephalitis, and West Nile viruses increased transcript stability and transgene expression compared to a conventional woodchuck hepatitis virus element (WPRE). Further dissection of engineered transcripts revealed that sfRNA elements (i) require incorporation in cis within the 3' untranslated region (UTR) of AAV genomes, (ii) require minimal dumbbell structures to exert the observed effects, and (iii) can stabilize AAV transcripts independent of 5'-3' exoribonuclease 1 (XRN1)-mediated decay. Additionally, preliminary in vivo assessment of AAV vectors bearing sfRNA elements in mice achieved increased transcript abundance and expression in cardiac tissue. Leveraging the functional versatility of engineered viral RNA elements may help improve the potency of AAV vector-based gene therapies. IMPORTANCE: Viral RNA elements can hijack host cell machinery to control stability of transcripts and consequently, infection. Studies that help better understand such viral elements can provide insights into antiviral strategies and also potentially leverage these features for therapeutic applications. In this study, by incorporating structured flaviviral RNA elements into recombinant adeno-associated viral (AAV) vector genomes, we show improved AAV transcript stability and transgene expression can be achieved, with implications for gene transfer.

Duke Scholars

Published In

J Virol

DOI

EISSN

1098-5514

Publication Date

August 20, 2024

Volume

98

Issue

8

Start / End Page

e0009524

Location

United States

Related Subject Headings

  • Virology
  • Transgenes
  • RNA, Viral
  • RNA Stability
  • Mice
  • Humans
  • HEK293 Cells
  • Genome, Viral
  • Genetic Vectors
  • Flaviviridae
 

Citation

APA
Chicago
ICMJE
MLA
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Meganck, R. M., Ogurlu, R., Liu, J., Moller-Tank, S., Tse, V., Blondel, L. O., … Asokan, A. (2024). Sub-genomic flaviviral RNA elements increase the stability and abundance of recombinant AAV vector transcripts. J Virol, 98(8), e0009524. https://doi.org/10.1128/jvi.00095-24
Meganck, Rita M., Roza Ogurlu, Jiacheng Liu, Sven Moller-Tank, Victor Tse, Leo O. Blondel, Alan Rosales, et al. “Sub-genomic flaviviral RNA elements increase the stability and abundance of recombinant AAV vector transcripts.J Virol 98, no. 8 (August 20, 2024): e0009524. https://doi.org/10.1128/jvi.00095-24.
Meganck RM, Ogurlu R, Liu J, Moller-Tank S, Tse V, Blondel LO, et al. Sub-genomic flaviviral RNA elements increase the stability and abundance of recombinant AAV vector transcripts. J Virol. 2024 Aug 20;98(8):e0009524.
Meganck, Rita M., et al. “Sub-genomic flaviviral RNA elements increase the stability and abundance of recombinant AAV vector transcripts.J Virol, vol. 98, no. 8, Aug. 2024, p. e0009524. Pubmed, doi:10.1128/jvi.00095-24.
Meganck RM, Ogurlu R, Liu J, Moller-Tank S, Tse V, Blondel LO, Rosales A, Hall AC, Vincent HA, Moorman NJ, Marzluff WF, Asokan A. Sub-genomic flaviviral RNA elements increase the stability and abundance of recombinant AAV vector transcripts. J Virol. 2024 Aug 20;98(8):e0009524.

Published In

J Virol

DOI

EISSN

1098-5514

Publication Date

August 20, 2024

Volume

98

Issue

8

Start / End Page

e0009524

Location

United States

Related Subject Headings

  • Virology
  • Transgenes
  • RNA, Viral
  • RNA Stability
  • Mice
  • Humans
  • HEK293 Cells
  • Genome, Viral
  • Genetic Vectors
  • Flaviviridae