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Updated: Jan 20, 2026

Assessing Caspase-Mediated Cleavage of Viral and Host Proteins in Virus-Infected Cells
Viral Nonstructural Protein 1 Induces Mitochondrion-Mediated Apoptosis in Mink Enteritis Virus Infection
Peng Lin1,2,3, Yuening Cheng1, Shanshan Song1
1Key Laboratory of Special Animal Epidemic Disease, Institute of Special Animal and Plant Sciences, Chinese Academy of Agricultural Sciences, Changchun, China.
Abstract:
Mink enteritis virus (MEV), an autonomous parvovirus, causes acute hemorrhagic enteritis in minks. The molecular pathogenesis of MEV infection has not been fully understood. In this study, we observed significantly increased apoptosis in the esophagus, small intestine, mesenteric lymph nodes, and kidney in minks experimentally infected with strain MEVB. In vitro infection of feline F81 cells with MEVB decreased cell viability and induced cell cycle arrest at G1 phase and apoptosis. By screening MEV nonstructural proteins (NS1 and NS2) and structural proteins (VP1 and VP2), we demonstrated that the MEV NS1 induced apoptosis in both F81 and human embryonic kidney 293T (HEK293T) cells, similar to that induced during MEV infection in minks. We found that the NS1 protein-induced apoptosis in HEK293T cells was mediated not by the death receptor but by the mitochondrial pathway, as demonstrated by mitochondrial depolarization, opening of mitochondrial transition pore, release of cytochrome c, and activation of caspase-9 and -3. Moreover, in NS1-transfected cells, we observed an increase of Bax expression and its translocation to the mitochondria, as well as an increased ratio of the Bax/Bcl-2, reactive oxygen species (ROS) production, and activated p38 mitogen-activated protein kinase (MAPK) and p53. Taken together, our results demonstrated that MEV induces apoptosis through activation of p38 MAPK and the p53-mediated mitochondrial apoptotic pathway induced by NS1 protein, which sheds light on the molecular pathogenesis of MEV infection.IMPORTANCE MEV causes fatal hemorrhagic enteritis in minks. Apoptosis is a cellular mechanism that effectively sacrifices virus-infected cells to maintain homeostasis between the virus and host. In this study, we demonstrated that MEV induces apoptosis both in vivo and in vitro Mechanistically, the viral large nonstructural protein NS1 activates p38 MAPK, which leads p53 phosphorylation to mediate the mitochondrial apoptotic pathway but not the death receptor-mediated apoptotic pathway. This is the first report to uncover the mechanism underlying MEV-induced apoptosis.
Insights
Mink enteritis virus (MEV) causes severe illness by inducing apoptosis, a programmed cell death. The viral NS1 protein activates p38 MAPK and p53, triggering the mitochondrial pathway for apoptosis in infected cells.
Area of Science:
- Virology
- Cell Biology
- Pathogenesis
Background:
- Mink enteritis virus (MEV), an autonomous parvovirus, causes acute hemorrhagic enteritis in minks.
- The precise molecular mechanisms underlying MEV pathogenesis remain incompletely understood.
Purpose of the Study:
- To elucidate the molecular pathogenesis of MEV infection, focusing on the induction of apoptosis.
- To identify the specific viral protein responsible for inducing apoptosis and delineate the underlying cellular pathways.
Main Methods:
- Experimental infection of minks with MEV strain MEVB and *in vitro* infection of feline F81 cells.
- Screening of MEV nonstructural (NS1, NS2) and structural (VP1, VP2) proteins for apoptosis-inducing activity.
- Analysis of apoptotic pathways in human embryonic kidney 293T (HEK293T) cells transfected with MEV NS1, including assessment of mitochondrial pathways, caspase activation, gene expression, ROS production, and MAPK/p53 signaling.
Main Results:
- MEV infection significantly increased apoptosis in various mink tissues (*in vivo*) and reduced cell viability and induced apoptosis (*in vitro*).
- MEV nonstructural protein NS1 was identified as the primary inducer of apoptosis in both F81 and HEK293T cells.
- NS1-induced apoptosis in HEK293T cells involved the mitochondrial pathway, characterized by mitochondrial depolarization, cytochrome c release, caspase-9 and -3 activation, increased Bax/Bcl-2 ratio, ROS production, and activation of p38 MAPK and p53.
Conclusions:
- MEV induces apoptosis via the NS1 protein, which activates p38 MAPK and the p53-mediated mitochondrial apoptotic pathway.
- This study reveals the molecular mechanism of MEV-induced apoptosis, highlighting the role of NS1 in viral pathogenesis and providing crucial insights into host-virus interactions.
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