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Identification and mutational analysis of a Rej response element in Jaagsiekte sheep retrovirus RNA
Takayuki Nitta1, Andrew Hofacre, Stacey Hull
1Department of Molecular Biology and Biochemistry, Cancer Research Institute, University of California Irvine, Irvine, California 92697-3900, USA.
Abstract:
Jaagsiekte sheep retrovirus (JSRV) is a simple betaretrovirus causing a contagious lung cancer of sheep. JSRV encodes unspliced and spliced viral RNAs, among which unspliced RNA encodes Gag and Pol proteins and a singly spliced mRNA encodes Env protein. In another study we found that JSRV encodes a regulatory protein, Rej, that is responsible for synthesis of Gag polyprotein from unspliced viral RNA. Rej is encoded in the 5' end of env, and it enhances nuclear export or accumulation of cytoplasmic unspliced viral RNA in 293T cells but not in most other cell lines (A. Hofacre, T. Nitta, and H. Fan, J. Virol. 83:12483-12498, 2009). In this study, we found that mutations in the 3' end of env in the context of a cytomegalovirus-driven full-length JSRV expression construct abolished Gag protein synthesis and released viruses in 293T cells. These mutants also showed deficits in accumulation of unspliced viral RNA in the cytoplasm. These mutants defined a Rej-responsive element (RejRE). Inhibition of CRM1 but not Tap function prevented nuclear export/accumulation of cytoplasmic unspliced RNA in 293T cells, similarly to other complex retroviruses that express analogous regulator proteins (e.g., human immunodeficiency virus Rev). Structural modeling of the RejRE with Zuker M-fold indicated a region with a predicted stable secondary structure. Mutational analysis in this region indicated the importance of both secondary structures and primary nucleotide sequences in a central stem-bulge-stem structure. In contrast to 293T cells, mutations in the RejRE did not affect the levels of cytoplasmic unspliced RNA in 293 cells, although the unspliced RNA showed partial degradation, perhaps due to lack of translation. RejRE-containing RNA relocalized Rej protein from the nucleus to the cytoplasm in 293 and rat 208F cells, suggesting binding of Rej to the RejRE.
Insights
Jaagsiekte sheep retrovirus (JSRV) uses a regulatory protein, Rej, to control viral RNA export. A specific RNA element, RejRE, is crucial for this process and Gag protein synthesis.
Area of Science:
- Virology
- Molecular Biology
- Cancer Research
Background:
- Jaagsiekte sheep retrovirus (JSRV) causes contagious lung cancer in sheep.
- JSRV encodes unspliced and spliced viral RNAs, with unspliced RNA producing Gag and Pol proteins.
- A previously identified regulatory protein, Rej, enhances nuclear export of unspliced viral RNA in specific cell lines.
Purpose of the Study:
- To investigate the role of the 3' end of the env gene in JSRV replication.
- To identify and characterize the JSRV-responsive element (RejRE) involved in viral RNA nuclear export.
- To elucidate the mechanism of Rej-mediated regulation of viral RNA and protein synthesis.
Main Methods:
- Site-directed mutagenesis of the JSRV env gene.
- Analysis of viral RNA accumulation and Gag protein synthesis in transfected cells (293T, 293, rat 208F).
- Inhibition of nuclear export pathways (CRM1, Tap).
- Structural modeling (Zuker M-fold) and mutational analysis of the RejRE.
Main Results:
- Mutations in the 3' env region abolished Gag synthesis and viral release in 293T cells.
- These mutations also impaired unspliced viral RNA accumulation in the cytoplasm, defining the RejRE.
- RejRE function was dependent on CRM1-mediated nuclear export, similar to other retroviruses.
- Structural analysis revealed a stable secondary structure within the RejRE essential for its function.
- RejRE-containing RNA induced relocalization of Rej protein, indicating Rej-RejRE binding.
Conclusions:
- The RejRE is a critical cis-acting element in JSRV unspliced RNA, mediating Rej-dependent nuclear export.
- The RejRE possesses a stable secondary structure important for Rej binding and function.
- This mechanism of RNA export regulation is conserved among complex retroviruses.
- Understanding RejRE function provides insights into JSRV pathogenesis and potential therapeutic targets.
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