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Updated: Jun 17, 2026

Genome-wide RNAi Screening to Identify Host Factors That Modulate Oncolytic Virus Therapy
Published on: April 3, 2018
CUG2, a novel oncogene confers reoviral replication through Ras and p38 signaling pathway
1Department of Cogno-Mechatronics Engineering, BK21 Nanofusion Technology Team, Pusan National University, Miryang, Republic of Korea.
Abstract:
As we have recently found a novel oncogene, the cancer-upregulated gene 2 (CUG2), which was elevated in a variety of tumor tissues such as the ovary, liver, lung and pancreas, we examined whether reovirus could efficiently induce cytolysis in cancer cells expressing CUG2 and thus be used as a potential cancer therapeutic agent. In this study, we describe experiments in which we use reovirus to treat NIH3T3 cells stably expressing either CUG2 (NIH-CUG2) or vector only (NIH-Vec). NIH-CUG2 cells readily support reoviral proliferation and undergo apoptosis, whereas NIH-Vec cells are highly resistant to reoviral infection and virus-induced apoptosis. This notable result may be explained by the observation that CUG2 expression inhibits PKR activation, leading to reoviral proliferation in nonpermissive NIH3T3 cells. Furthermore, reovirus infection results in almost complete regression of tumorgenic NIH-CUG2 cells in transplanted nude mice. As we found that CUG2 enhances activation of MAPK (ERK, JNK and p38), Src kinase and Ras, we examined whether CUG2 confers reoviral replication independent of the Ras or p38 MAPK signaling pathway. From these experiments we found that either inhibition of p38 MAPK or Ras blocks reoviral proliferation even in the presence of CUG2 but inhibition of ERK, JNK and Src kinase does not, indicating that activation of p38 MAPK and Ras has critical roles in reoviral replication in CUG2-expressing tumor cells. Accordingly, we propose that reovirus can be useful in the treatment of transformed cells expressing CUG2, which is commonly detected in various tumor tissues.
Insights
Reovirus effectively kills cancer cells expressing the novel oncogene cancer-upregulated gene 2 (CUG2). This virus promotes CUG2-expressing tumor regression in mice by inhibiting PKR activation and utilizing p38 MAPK and Ras pathways.
Area of Science:
- Oncology
- Virology
- Molecular Biology
Background:
- A novel oncogene, cancer-up-regulated gene 2 (CUG2), is elevated in various human tumors.
- Reovirus is a potential oncolytic virus with therapeutic applications.
Purpose of the Study:
- To investigate the efficacy of reovirus in targeting cancer cells expressing CUG2.
- To elucidate the mechanisms underlying reovirus-induced cytolysis in CUG2-expressing cells.
Main Methods:
- NIH3T3 cells stably expressing CUG2 (NIH-CUG2) or vector only (NIH-Vec) were used.
- Reovirus treatment was administered to cell cultures and in transplanted nude mouse models.
- Signaling pathways including PKR, MAPK, Src kinase, and Ras were analyzed.
Main Results:
- NIH-CUG2 cells supported reovirus proliferation and apoptosis, unlike resistant NIH-Vec cells.
- CUG2 expression inhibited PKR activation, facilitating reovirus replication in non-permissive cells.
- Reovirus infection led to significant regression of CUG2-expressing tumors in mice.
- CUG2 enhances MAPK, Src kinase, and Ras activation.
- Inhibition of p38 MAPK or Ras blocked reovirus proliferation in CUG2-expressing cells.
Conclusions:
- Reovirus demonstrates significant oncolytic potential against CUG2-expressing cancer cells.
- CUG2 facilitates reovirus replication by inhibiting PKR and activating p38 MAPK and Ras signaling pathways.
- Reovirus represents a promising therapeutic agent for cancers with elevated CUG2 expression.
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