Structural snapshots of phenuivirus cap-snatching and transcription

Author:

Williams Harry M123ORCID,Thorkelsson Sigurdur R234,Vogel Dominik1ORCID,Busch Carola1,Milewski Morlin1,Cusack Stephen5ORCID,Grünewald Kay234,Quemin Emmanuelle R J236,Rosenthal Maria127ORCID

Affiliation:

1. Bernhard Nocht Institute for Tropical Medicine (BNITM) , Hamburg , Germany

2. Centre for Structural Systems Biology (CSSB) , Hamburg , Germany

3. Leibniz Institute of Virology , Hamburg , Germany

4. University of Hamburg , Hamburg , Germany

5. European Molecular Biology Laboratory , Grenoble , France

6. Department of Virology, Institute for Integrative Biology of the Cell (I2BC) , Centre National de la Recherche Scientifique (CNRS) UMR9198, Gif-sur-Yvette , France

7. Fraunhofer Institute for Translational Medicine and Pharmacology (ITMP) , Discovery Research ScreeningPort, Hamburg , Germany

Abstract

Abstract Severe fever with thrombocytopenia syndrome virus (SFTSV) is a human pathogen that is now endemic to several East Asian countries. The viral large (L) protein catalyzes viral transcription by stealing host mRNA caps via a process known as cap-snatching. Here, we establish an in vitro cap-snatching assay and present three high-quality electron cryo-microscopy (cryo-EM) structures of the SFTSV L protein in biologically relevant, transcription-specific states. In a priming-state structure, we show capped RNA bound to the L protein cap-binding domain (CBD). The L protein conformation in this priming structure is significantly different from published replication-state structures, in particular the N- and C-terminal domains. The capped-RNA is positioned in a way that it can feed directly into the RNA-dependent RNA polymerase (RdRp) ready for elongation. We also captured the L protein in an early-elongation state following primer-incorporation demonstrating that this priming conformation is retained at least in the very early stages of primer extension. This structural data is complemented by in vitro biochemical and cell-based assays. Together, these insights further our mechanistic understanding of how SFTSV and other bunyaviruses incorporate stolen host mRNA fragments into their viral transcripts thereby allowing the virus to hijack host cell translation machinery.

Funder

Leibniz Association

UHH

DFG

Leibniz Institute of Virology

Alexander von Humboldt Foundation

Klaus Tschira Boost Fund

German Federal Ministry for Education and Research

Publisher

Oxford University Press (OUP)

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