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Pseudorabies virus hijacks DDX3X, initiating an addictive 'mad itch' and immune suppression, to facilitate viral spread

Authors :
Shane J. F. Cronin
Miguel A. Tejada
Ren Song
Kathlyn Laval
Domagoj Cikes
Ming Ji
Annalaura Brai
Johannes Stadlmann
Maria Novatchikova
Thomas Perlot
Omar Hasan Ali
Lorenzo Botta
Thomas Decker
Jelena Lazovic
Astrid Hagelkruys
Lynn Enquist
Shuan Rao
Orkide O. Koyuncu
Josef M. Penninger
Publication Year :
2023
Publisher :
Cold Spring Harbor Laboratory, 2023.

Abstract

Infections with defined Herpesviruses, such as Pseudorabies virus (PRV) and Varicella zoster virus (VZV) can cause neuropathic itch, referred to as “mad itch” in multiple species. The underlying mechanisms involved in neuropathic “mad itch” are poorly understood. Here, we show that PRV infections hijack the RNA helicase DDX3X in sensory neurons to facilitate anterograde transport of the virus along axons. PRV induces re-localization of DDX3X from the cell body to the axons which ultimately leads to death of the infected sensory neurons. Inducible genetic ablation ofDdx3xin sensory neurons results in neuronal death and “mad itch” in mice. This neuropathic “mad itch” is propagated through activation of the opioid system making the animals “addicted to itch”. Moreover, we show that PRV co-opts and diverts T cell development in the thymus via a sensory neuron-IL-6-hypothalamus-corticosterone stress pathway. Our data reveal how PRV, through regulation of DDX3X in sensory neurons, travels along axons and triggers neuropathic itch and immune deviations to initiate pathophysiological programs which facilitate its spread to enhance infectivity.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........bff066a5f58b02d4125b43795f2f0413
Full Text :
https://doi.org/10.1101/2023.05.09.539956