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An array of novel murine spleen focus-forming viruses that activate the erythropoietin receptor
E Gomez-Lucia1, Y Zhi, M Nabavi
1Department of Biochemistry, Oregon Health Sciences University, Portland 97201-3098, USA.
Abstract:
The Friend spleen focus-forming virus (SFFV) env gene encodes a 409-amino-acid glycoprotein with an apparent Mr of 55,000 (gp55) that binds to erythropoietin receptors (EpoR) to stimulate erythroblastosis. We reported previously the in vivo selection during serial passages in mice of several evolutionary intermediates that culminated in the formation of a novel SFFV (M. E. Hoatlin, E. Gomez-Lucia, F. Lilly, J. H. Beckstead, and D. Kabat, J. Virol. 72:3602-3609, 1998). A mouse injected with a retroviral vector in the presence of a nonpathogenic helper virus developed long-latency erythroblastosis, and subsequent viral passages resulted in more pathogenic isolates. The viruses taken from these mice converted an erythropoietin-dependent cell line (BaF3/EpoR) into factor-independent derivatives. Western blot analysis of cell extracts with an antiserum that broadly reacts with murine retroviral envelope glycoproteins suggested that the spleen from the initial mouse with mild erythoblastosis contained an array of viral components that were capable of activating EpoR. DNA sequence analysis of the viral genomes cloned from different factor-independent cell clones revealed env genes with open reading frames encoding 644, 449, and 187 amino acids. All three env genes contained 3' regions identical to that of SFFV, including a 6-bp duplication and a single-base insertion that have been shown previously to be critical for pathogenesis. However, the three env gene sequences did not contain any polytropic sequences and were divergent in their 5' regions, suggesting that they had originated by recombination and partial deletions of endogenously inherited MuLV env sequences. These results suggest that the requirements for EpoR activation by SFFV-related viruses are dependent on sequences at the 3' end of the env gene and not on the polytropic regions or on the 585-base deletions that are common among the classical strains of SFFV. Moreover, sequence analysis of the different recombinants and deletion mutants revealed that short direct and indirect repeat sequences frequently flanked the deletions that had occurred, suggesting a reverse transcriptase template jumping mechanism for this rapid retroviral diversification.
Insights
Friend spleen focus-forming virus (SFFV) env gene activation of erythropoietin receptors (EpoR) depends on 3' end sequences, not polytropic regions. Viral diversification occurs via reverse transcriptase template jumping.
Area of Science:
- Virology
- Molecular Biology
- Genetics
Background:
- Friend spleen focus-forming virus (SFFV) env gene encodes a glycoprotein (gp55) that stimulates erythroblastosis by binding erythropoietin receptors (EpoR).
- Previous studies showed in vivo selection of evolutionary intermediates leading to novel SFFV strains.
- Retroviral vectors and helper viruses can induce erythroblastosis, with subsequent passages increasing pathogenicity.
Purpose of the Study:
- To investigate the molecular mechanisms of EpoR activation by SFFV-related viruses.
- To identify the viral genetic elements critical for pathogenesis and factor-independent cell growth.
- To understand the evolutionary pathways and diversification mechanisms of SFFV.
Main Methods:
- In vivo serial passages of viruses in mice to select for pathogenic isolates.
- Conversion of erythropoietin-dependent cell lines (BaF3/EpoR) to factor-independent derivatives.
- Western blot analysis of viral components and DNA sequencing of viral genomes from cell clones.
Main Results:
- Viral components capable of activating EpoR were found in spleen extracts.
- Sequencing revealed three env genes with varying lengths (644, 449, 187 amino acids) containing critical 3' SFFV regions.
- These env genes lacked polytropic sequences but had divergent 5' regions, suggesting recombination with endogenous MuLV env sequences.
Conclusions:
- EpoR activation by SFFV-related viruses is primarily dependent on 3' end env gene sequences.
- Polytropic regions and classical SFFV deletions are not essential for EpoR activation.
- Rapid retroviral diversification is likely driven by reverse transcriptase template jumping, as indicated by repeat sequences flanking deletions.