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Genome-wide RNAi Screening to Identify Host Factors That Modulate Oncolytic Virus Therapy
Published on: April 3, 2018
Transcription factors down-stream of Ras as molecular indicators for targeting malignancies with oncolytic herpes
Tuba Esfandyari1, Ayalew Tefferi, Anna Szmidt
1The Molecular Medicine Laboratory, Department of Medicine, University of Kansas School of Medicine, Kansas City, KS 66160, USA.
Abstract:
Overactivation in Ras signaling has been under intensive study as the molecular basis for development of cancer. Such overactivation can occur in the presence or absence of mutations in Ras gene resulting in activation of a series of down-stream effectors such as transcription factors. Different studies have shown the activation of Ras down-stream effectors in non-Hodgkin lymphoma (NHL) although mutations in Ras are not prevalent in this malignancy. Since overactivation in Ras signaling also increases permissiveness of cancer cells to infection by oncolytic versions of herpes simplex virus (e.g. R3616), we were interested in evaluating the value of transcription factors down-stream of Ras as molecular indicators for permissiveness to herpes therapy. In order to accomplish this, and also to assess the permissiveness of lymphoma cells to infection with R3616, we used NHL cell lines Daudi, Jurkat, NC37, Raji, Ramos and ST486. Once the levels of phosphorylation (activation) of extracellular-signal regulated kinase (ERK, a Ras effector pathway) and its down-stream transcription factor ELK were evaluated, Raji and NC37 showed a significant increase in the phosphorylation levels of both molecules while ATF2 (another transcription factor down-stream of p38-kinase pathway) seemed to be activated in all studied cells. Raji and NC37 cells were also most permissive cells to infection with R3616 while their permissiveness was decreased upon treatment of cells with an inhibitor of ELK-DNA binding portraying ERK/ELK as a suitable predictive indicator for selection of cancer cells with increased sensitivity to R3616. This study, therefore, for the first time documents permissiveness of lymphoma cells to oncolytic herpes viruses and introduces ELK as a suitable factor for predicting tumor susceptibility to these novel anticancer agents.
Insights
Ras signaling overactivation in cancer can predict herpes therapy success. The extracellular-signal regulated kinase/ELK pathway indicates lymphoma cell permissiveness to oncolytic herpes virus R3616.
Area of Science:
- Oncology
- Virology
- Molecular Biology
Background:
- Ras signaling pathway overactivation is a key mechanism in cancer development.
- Non-Hodgkin lymphoma (NHL) shows activation of Ras downstream effectors, despite infrequent Ras mutations.
- Ras pathway activation enhances cancer cell susceptibility to oncolytic herpes simplex virus infections.
Purpose of the Study:
- To evaluate Ras downstream transcription factors as biomarkers for herpes therapy permissiveness.
- To assess the permissiveness of NHL cell lines to oncolytic herpes virus R3616.
- To identify predictive indicators for selecting cancer cells sensitive to oncolytic herpes virus therapy.
Main Methods:
- Utilized NHL cell lines (Daudi, Jurkat, NC37, Raji, Ramos, ST486).
- Assessed phosphorylation levels of extracellular-signal regulated kinase (ERK) and transcription factor ELK.
- Evaluated ATF2 activation and R3616 infection permissiveness.
- Tested the effect of an ELK-DNA binding inhibitor on viral infection.
Main Results:
- Raji and NC37 cell lines exhibited significantly increased phosphorylation of ERK and ELK.
- ATF2 activation was observed across all tested NHL cell lines.
- Raji and NC37 cells demonstrated the highest permissiveness to R3616 infection.
- Inhibiting ELK-DNA binding decreased R3616 permissiveness in susceptible cells.
Conclusions:
- This study first demonstrates the permissiveness of lymphoma cells to oncolytic herpes viruses.
- The ERK/ELK pathway serves as a reliable indicator for predicting tumor susceptibility to R3616.
- ELK is proposed as a predictive biomarker for selecting cancer patients for oncolytic herpes virus therapy.
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