Hantavirus L protein exhibits shutoff activity mediated by its N-terminal endonuclease domain

K Kohei Oishi T Tomoki Yoshikawa (Japan Institute for Health Security, Tokyo) S Satoshi Taniguchi M Madoka Kawahara T Takeshi Kurosu M Masayuki Shimojima

Abstract

Abstract The hantavirus L protein is a viral polymerase essential for viral transcription and replication; however, its expression in mammalian cells has been notoriously difficult. In this study, we achieved robust plasmid-based expression of the L protein by combining a T7-driven system with mutations that reduce endonuclease activity. This strategy was pivotal, as conventional RNA polymerase II (Pol II)-dependent systems failed to yield detectable expression. Although wild-type L protein was barely detectable, its presence suppressed co-expressed genes, suggesting a potent host shutoff activity that inhibits both trans-gene and its own (cis-) expression. Leveraging functional homology to the influenza PA-X protein, we identify amino acid residues essential for the shutoff activity of L protein by using its N-terminal fragment, which can be expressed via standard Pol II-dependent systems. Our mutagenesis analysis established a toolset for the predictable fine-tuning of shutoff activity and L protein expression levels, facilitating a detailed analysis of the interplay between polymerase activity and viral replication. These findings elucidate the mechanisms underlying the difficulty in expressing the hantavirus L protein and emphasize the necessity of accounting for these cis- , and trans- regulatory effects in functional analyses, such as in minigenome assays, to prevent data misinterpretation.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 14, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (6)

K

Kohei Oishi

T

Tomoki Yoshikawa

Japan Institute for Health Security, Tokyo

S

Satoshi Taniguchi

M

Madoka Kawahara

T

Takeshi Kurosu

M

Masayuki Shimojima