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Published on: February 22, 2018
The Expression of P35 Plays a Key Role in the Difference in Apoptosis Induced by AcMNPV Infection in Different
Qianlong Yu1, Minghui Wang1, Xuemeng Ding1
1Shangdong Engineering Research Center for Environment-Friendly Agricultural Pest Management, Qingdao Agricultural University, Qingdao 266109, China.
Abstract:
Baculovirus infection induces apoptosis in host cells, and apoptosis significantly affects virus production. Autographa californica multiple nucleopolyhedrovirus (AcMNPV) can regulate apoptosis, but the regulatory mechanism is unclear. Here, we found that AcMNPV infection induced different apoptosis responses in different Spodoptera exigua cell lines. In the early stages of viral infection (1-6 h), Se-1 cells underwent severe apoptosis, while Se-3 cells underwent very slight apoptosis. In the late stages of viral infection (12-72 h), Se-1 cells continued to undergo apoptosis and formed a large number of apoptotic bodies, while the apoptosis of Se-3 cells was inhibited and no apoptotic bodies were formed. To determine the reasons for the apoptosis differences in the two cell lines, we measured the expression of the six S. exigua cysteine-dependent aspartate specific protease genes (SeCaspase-1 to -6) and the three AcMNPV antiapoptotic protein genes (iap1, iap2 and p35) during viral infection. We found that SeCaspase-1 to -6 were all activated in Se-1 cells and inhibited in Se-3 cells, whereas iap1, iap2 and p35 were all inhibited in Se-1 cells and normally expressed in Se-3 cells. And p35 was expressed earlier than iap1 and iap2 in Se-3 cells. Otherwise, Se-1 and Se-3 cells would all be apoptotic when infected with the recombinant p35 knockout AcMNPV, whereas only Se-1 cells were apoptotic, but Se-3 cells were not apoptotic when infected with the recombinant p35 repair AcMNPV. Combined with the fact that the expression of P35 protein is inhibited in Se-1 cells but normally expressed in Se-3 cells during the infection of recombinant p35 repair AcMNPV, we proposed that the different expression of P35 is an important reason for the apoptosis differences between the two cell lines. We also found that some genes associated with apoptosis can probably regulate the expression of P35. However, the major upstream regulators of P35 and their mechanisms are still unclear and will be studied in the future.
Insights
Autographa californica multiple nucleopolyhedrovirus (AcMNPV) infection causes differential apoptosis in Spodoptera exigua cell lines. The baculovirus P35 protein is key in regulating these apoptosis differences, with its expression varying between cell lines.
Area of Science:
- Molecular Virology
- Insect Cell Biology
- Apoptosis Regulation
Background:
- Baculovirus infections induce host cell apoptosis, impacting viral replication.
- Autographa californica multiple nucleopolyhedrovirus (AcMNPV) modulates apoptosis, but mechanisms remain unclear.
- Spodoptera exigua cell lines exhibit varying apoptosis responses to AcMNPV infection.
Purpose of the Study:
- To investigate the differential apoptosis responses of Spodoptera exigua cell lines (Se-1 and Se-3) to AcMNPV infection.
- To elucidate the molecular mechanisms underlying these apoptosis differences, focusing on viral anti-apoptotic genes.
Main Methods:
- Comparative analysis of apoptosis in Se-1 and Se-3 cells post-AcMNPV infection.
- Gene expression analysis of Spodoptera exigua caspases (SeCaspase-1 to -6) and AcMNPV anti-apoptotic genes (iap1, iap2, p35).
- Utilized recombinant AcMNPV with p35 knockout and repair to assess P35 protein's role.
Main Results:
- Se-1 cells showed severe apoptosis early and late, while Se-3 cells exhibited minimal apoptosis.
- SeCaspase activation and viral iap gene inhibition occurred in Se-1 cells; the reverse was observed in Se-3 cells.
- The baculovirus P35 protein was identified as a critical factor, with its differential expression correlating with apoptosis outcomes in the cell lines.
Conclusions:
- Differential expression of the AcMNPV P35 anti-apoptotic protein is a primary driver of varied apoptosis responses in Spodoptera exigua cell lines.
- While P35 plays a crucial role, other apoptosis-associated genes may also influence its regulation.
- Further research is needed to identify upstream regulators and mechanisms controlling P35 expression.
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The Extrinsic Apoptotic Pathway
The Intrinsic Apoptotic Pathway
Caspases

