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A conserved viral amphipathic helix governs the replication site-specific membrane association

Authors :
Preethi Sathanantham
Wenhao Zhao
Guijuan He
Austin Murray
Emma Fenech
Arturo Diaz
Maya Schuldiner
Xiaofeng Wang
Source :
PLOS Pathogens. 18:e1010752
Publication Year :
2022
Publisher :
Public Library of Science (PLoS), 2022.

Abstract

Positive-strand RNA viruses assemble their viral replication complexes (VRCs) on specific host organelle membranes, yet it is unclear how viral replication proteins recognize and what motifs or domains in viral replication proteins determine their localizations. We show here that an amphipathic helix, helix B in replication protein 1a of brome mosaic virus (BMV), is necessary for 1a’s localization to the nuclear endoplasmic reticulum (ER) membrane where BMV assembles its VRCs. Helix B is also sufficient to target soluble proteins to the nuclear ER membrane in yeast and plant cells. We further show that an equivalent helix in several plant- and human-infecting viruses of the alphavirus-like superfamily targets fluorescent proteins to the organelle membranes where they form their VRCs, including ER, vacuole, and Golgi membranes. Our work reveals a conserved helix that governs the localization of VRCs among a group of viruses and points to a possible target for developing broad-spectrum antiviral strategies.

Details

ISSN :
15537374
Volume :
18
Database :
OpenAIRE
Journal :
PLOS Pathogens
Accession number :
edsair.doi.dedup.....067271c7f9c91dbe0518ca70031420e5