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PRRSV hijacks DDX3X protein and induces ferroptosis to facilitate viral replication.

Authors :
Mao, Qian
Ma, Shengming
Li, Shuangyu
Zhang, Yuhua
Li, Shanshan
Wang, Wenhui
Wang, Fang
Guo, Zekun
Wang, Chengbao
Source :
Veterinary Research; 8/18/2024, Vol. 55 Issue 1, p1-18, 18p
Publication Year :
2024

Abstract

Porcine reproductive and respiratory syndrome virus (PRRSV) is a severe disease with substantial economic consequences for the swine industry. The DEAD-box helicase 3 (DDX3X) is an RNA helicase that plays a crucial role in regulating RNA metabolism, immunological response, and even RNA virus infection. However, it is unclear whether it contributes to PRRSV infection. Recent studies have found that the expression of DDX3X considerably increases in Marc-145 cells when infected with live PRRSV strains Ch-1R and SD16; however, it was observed that inactivated viruses did not lead to any changes. By using the RK-33 inhibitor or DDX3X-specific siRNAs to reduce DDX3X expression, there was a significant decrease in the production of PRRSV progenies. In contrast, the overexpression of DDX3X in host cells substantially increased the proliferation of PRRSV. A combination of transcriptomics and metabolomics investigations revealed that in PRRSV-infected cells, DDX3X gene silencing severely affected biological processes such as ferroptosis, the FoxO signalling pathway, and glutathione metabolism. The subsequent transmission electron microscopy (TEM) imaging displayed the typical ferroptosis features in PRRSV-infected cells, such as mitochondrial shrinkage, reduction or disappearance of mitochondrial cristae, and cytoplasmic membrane rupture. Conversely, the mitochondrial morphology was unchanged in DDX3X-inhibited cells. Furthermore, silencing of the DDX3X gene changed the expression of ferroptosis-related genes and inhibited the virus proliferation, while the drug-induced ferroptosis inversely promoted PRRSV replication. In summary, these results present an updated perspective of how PRRSV infection uses DDX3X for self-replication, potentially leading to ferroptosis via various mechanisms that promote PRRSV replication. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09284249
Volume :
55
Issue :
1
Database :
Supplemental Index
Journal :
Veterinary Research
Publication Type :
Academic Journal
Accession number :
179086736
Full Text :
https://doi.org/10.1186/s13567-024-01358-y