Sindbis viral vector induced apoptosis requires translational inhibition and signaling through Mcl-1 and Bak
Lisa Venticinque1, Daniel Meruelo
1NYU Cancer Institute and the NYU Gene Therapy Center, NYU School of Medicine, 550 First Avenue, New York, NY 10016, USA. lisa.venticinque@gmail.com
Background:
Sindbis viral vectors are able to efficiently target and kill tumor cells in vivo, as shown using pancreatic and ovarian cancer models. Infection results in apoptosis both in vitro and in vivo. Sindbis vector uptake is mediated by the LAMR, which is upregulated on a number of different tumor types, thus conferring specificity of the vector to a wide range of cancers. In this study we elucidate the mechanism of apoptosis in two tumor cell lines, MOSEC, derived from the ovarian epithelium and Pan02, derived from a pancreatic adenocarcinoma. A comprehensive understanding of the mechanism of apoptosis would facilitate the design of more effective vectors for cancer therapy.
Results:
The initial phase of Sindbis vector induced apoptosis in MOSEC and Pan02 models reconfirms that viral infection is sensed by PKR due to double-stranded RNA intermediates associated with genomic replication. PKR activation results in translation inhibition through eIF2alpha phosphorylation and initiation of the stress response. Our studies indicate that the roles of two proteins, Mcl-1 and JNK, intimately link Sindbis induced translational arrest and cellular stress. Translational arrest inhibits the synthesis of anti-apoptotic Bcl-2 protein, Mcl-1. JNK activation triggers the release of Bad from 14-3-3, which ultimately results in apoptosis. These signals from translational arrest and cellular stress are propagated to the mitochondria where Bad and Bik bind to Bcl-xl and Mcl-1 respectively. Formation of these heterodimers displaces Bak, which results in caspase 9 cleavage and signaling through the mitochondrial pathway of apoptosis.
Conclusion:
The host cell response to Sindbis is triggered through PKR activation. Our studies demonstrate that PKR activation and subsequent translational arrest is linked to both cellular stress and apoptosis. We have also found the linkage point between translational arrest and apoptosis to be Mcl-1, a protein whose constant translation is required for inhibition of apoptosis. With this information vectors can be designed, which express or repress proteins implicated in this study, to enhance their therapeutic potential.
Insights
Sindbis viral vectors induce apoptosis in cancer cells by activating PKR, leading to translational arrest and cellular stress. This mechanism, involving Mcl-1, can be leveraged to design more effective cancer therapies.
Area of Science:
- Oncology
- Virology
- Molecular Biology
Background:
- Sindbis viral vectors demonstrate efficient tumor cell targeting and apoptosis induction in pancreatic and ovarian cancer models.
- Vector uptake is mediated by the LAMR, which is upregulated on various tumor types, conferring cancer specificity.
- Understanding the apoptosis mechanism is crucial for designing improved cancer therapy vectors.
Purpose of the Study:
- To elucidate the mechanism of Sindbis virus-induced apoptosis in ovarian (MOSEC) and pancreatic (Pan02) cancer cell lines.
- To identify key molecular players linking viral infection, cellular stress, and apoptosis.
- To provide insights for the rational design of enhanced Sindbis vectors for cancer treatment.
Main Methods:
- Investigated Sindbis virus-induced apoptosis in MOSEC and Pan02 cell lines.
- Analyzed the role of PKR (double-stranded RNA-dependent protein kinase) activation and its downstream effects.
- Examined the involvement of Mcl-1 (myeloid cell leukemia 1) and JNK (c-Jun N-terminal kinase) pathways in apoptosis signaling.
Main Results:
- Sindbis virus infection activates PKR, leading to eIF2alpha phosphorylation and translational arrest.
- Translational arrest inhibits Mcl-1 synthesis, while JNK activation releases Bad, propagating apoptotic signals.
- Apoptotic signals converge at the mitochondria, involving Bad, Bik, Bcl-xl, Mcl-1, and Bak, culminating in caspase 9 activation.
Conclusions:
- PKR activation is the primary host cell response to Sindbis virus, linking translational arrest, cellular stress, and apoptosis.
- Mcl-1 is a critical linkage point, as its continuous translation is necessary to inhibit apoptosis.
- This detailed understanding of the apoptosis pathway enables the design of modified Sindbis vectors to enhance anti-cancer therapeutic potential.
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