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Published on: January 20, 2017
Fish TRIM35 negatively regulates the interferon signaling pathway in response to grouper nodavirus infection
Youhua Huang1, Jingcheng Zhang2, Jiaxin Liu2
1College of Marine Sciences, South China Agricultural University, Guangzhou 510642, China.
Abstract:
Tripartite motif-containing protein 35 (TRIM35) has been demonstrated to exert critical roles in cancer, cell death and other multiple cell processes. However, the precisely roles of TRIM35 during virus infection still remained largely unknown. In the current study, we cloned a TRIM35 gene from orange spotted grouper (EcTRIM35) and uncovered its roles in response to nodavirus infection. EcTRIM35 encoded a 456-aa protein which showed 65% and 32% identity to large yellow croaker (Larimichthys crocea) and human (Homo sapiens), respectively. Structure prediction and amino acid alignment analysis indicated that EcTRIM35 contained three conserved domains, including RING domain, B-BOX and SPRY domain. In healthy grouper, the high expression level of EcTRIM35 could be detected in liver, spleen and intestine. After infection with red-spotted grouper nervous necrosis (RGNNV) and Singapore grouper iridovirus (SGIV) in GS cells, the transcript of EcTRIM35 was significantly up-regulated with the infection time increased. Under fluorescence microscopy, the bright fluorescence aggregates were observed in EcTRIM35 transfected cells, but the fluorescence distribution was obviously altered in the EcTRIM35-ΔRING transfected cells. After incubation with RGNNV, the overexpression of EcTRIM35 in vitro significantly enhanced the viral replication, evidenced by the enhancement of cytopathic effect (CPE) severity and the up-regulation of the viral gene transcription. Moreover, the ectopic expression of EcTRIM35 significantly decreased the expression of interferon signaling molecules or effectors. Further studies elucidated that EcTRIM35 overexpression significantly weakened the MAVS-, MITA- or TBK1-induced interferon immune response, but showed no effects on MDA5-induced immune response. Thus, our results will shed new lights on the roles of fish TRIM35 in innate immune response against grouper virus infection.
Insights
The study reveals that orange-spotted grouper TRIM35 (EcTRIM35) enhances viral replication and suppresses interferon immunity, highlighting its role in fish antiviral defense.
Area of Science:
- Aquatic immunology
- Fish virology
- Innate immune response
Background:
- Tripartite motif-containing protein 35 (TRIM35) is implicated in various cellular processes, but its function during viral infections in fish remains largely unexplored.
- Understanding fish antiviral mechanisms is crucial for aquaculture health and disease management.
Purpose of the Study:
- To investigate the role of orange-spotted grouper TRIM35 (EcTRIM35) in response to nodavirus and iridovirus infections.
- To elucidate the molecular mechanisms underlying EcTRIM35's involvement in fish innate immunity.
Main Methods:
- Cloning and characterization of the EcTRIM35 gene from orange-spotted grouper.
- Gene expression analysis via quantitative real-time PCR (qRT-PCR) upon viral challenge.
- Subcellular localization studies using fluorescence microscopy.
- In vitro assays to assess the impact of EcTRIM35 overexpression on viral replication and interferon signaling pathways.
Main Results:
- EcTRIM35 expression was significantly upregulated in GS cells infected with red-spotted grouper nervous necrosis virus (RGNNV) and Singapore grouper iridovirus (SGIV).
- Overexpression of EcTRIM35 in vitro enhanced RGNNV replication, increased cytopathic effect, and boosted viral gene transcription.
- EcTRIM35 overexpression suppressed interferon signaling by weakening MAVS-, MITA-, and TBK1-mediated immune responses.
Conclusions:
- Fish TRIM35 plays a detrimental role in antiviral immunity by promoting viral replication and inhibiting interferon signaling.
- EcTRIM35 represents a potential target for understanding and managing viral diseases in grouper aquaculture.
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