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Pseudorabies virus infection triggers mitophagy to dampen the interferon response and promote viral replication
Yuan Zhao1, Chan Ding1,2, Zhenbang Zhu1
1Jiangsu Co-innovation Center for Prevention and Control of Important Animal Infectious Diseases and Zoonoses, College of Veterinary Medicine, Yangzhou University, Yangzhou, China.
Abstract:
Pseudorabies virus (PRV) utilizes multiple strategies to inhibit type I interferon (IFN-I) production and signaling to achieve innate immune evasion. Among several other functions, mitochondria serve as a crucial immune hub in the initiation of innate antiviral responses. It is currently unknown whether PRV inhibits innate immune responses by manipulating mitochondria. In this study, we found that PRV infection damages mitochondrial structure and function, as shown by mitochondrial membrane potential depolarization, reduction in mitochondrial numbers, and an imbalance in mitochondrial dynamics. In addition, PRV infection triggered PINK1-Parkin-mediated mitophagy to eliminate the impaired mitochondria, which resulted in a suppression of IFN-I production, thereby promoting viral replication. Furthermore, we found that mitophagy resulted in the degradation of the mitochondrial antiviral signaling protein, which is located on the mitochondrial outer membrane. In conclusion, the data of the current study indicate that PRV-induced mitophagy represents a previously uncharacterized PRV evasion mechanism of the IFN-I response, thereby promoting virus replication.IMPORTANCEPseudorabies virus (PRV), a pathogen that induces different disease symptoms and is often fatal in domestic animals and wildlife, has caused great economic losses to the swine industry. Since 2011, different PRV variant strains have emerged in Asia, against which current commercial vaccines may not always provide optimal protection in pigs. In addition, there are indications that some of these PRV variant strains may sporadically infect people. In the current study, we found that PRV infection causes mitochondria injury. This is associated with the induction of mitophagy to eliminate the damaged mitochondria, which results in suppressed antiviral interferon production and signaling. Hence, our study reveals a novel mechanism that is used by PRV to antagonize the antiviral host immune response, providing a theoretical basis that may contribute to the research toward and development of new vaccines and antiviral drugs.
Insights
Pseudorabies virus (PRV) damages mitochondria, triggering mitophagy that suppresses antiviral interferon production. This PRV-induced mitophagy is a novel immune evasion mechanism promoting viral replication.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Pseudorabies virus (PRV) causes significant economic losses in the swine industry and poses potential zoonotic risks.
- PRV employs strategies to evade the host's innate immune system, particularly type I interferon (IFN-I) responses.
- Mitochondria are critical for initiating innate antiviral immunity, but PRV's manipulation of these organelles remains unclear.
Purpose of the Study:
- To investigate whether PRV inhibits innate immune responses by targeting mitochondria.
- To elucidate the role of mitochondrial dynamics and mitophagy in PRV infection and immune evasion.
Main Methods:
- Assessing mitochondrial structure and function (membrane potential, number, dynamics) in PRV-infected cells.
- Investigating the involvement of PINK1-Parkin-mediated mitophagy.
- Analyzing the impact of mitophagy on IFN-I production and viral replication.
- Examining the degradation of mitochondrial antiviral signaling protein (MAVS).
Main Results:
- PRV infection led to mitochondrial damage, including membrane potential depolarization and reduced mitochondrial numbers.
- PRV infection induced PINK1-Parkin-mediated mitophagy, eliminating damaged mitochondria.
- Mitophagy suppressed IFN-I production by degrading MAVS, thereby promoting PRV replication.
- PRV-induced mitophagy represents a novel immune evasion strategy.
Conclusions:
- PRV infection damages mitochondria and triggers mitophagy as an evasion mechanism.
- Mitophagy leads to the degradation of MAVS, suppressing antiviral interferon responses.
- This study reveals a new PRV immune evasion strategy, offering potential targets for novel vaccines and antiviral drugs.
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