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Published on: February 9, 2024
Feline immunodeficiency virus ORF-Ais required for virus particle formation and virus infectivity
Malou C Gemeniano1, Earl T Sawai, Christian M Leutenegger
1Department of Medicine and Epidemiology, School of Veterinary Medicine, University of California, Davis, California 95616, USA.
Abstract:
The orf-A (orf-2) gene of feline immunodeficiency virus (FIV) is a small open reading frame predicted to encode a 77-amino-acid protein that contains putative domains similar to those of the ungulate lentiviral Tat protein. Orf-A is reported to be critical for efficient viral replication in vitro and in vivo. A series of FIV-pPPR-derived proviruses with in-frame deletions and point mutations within orf-A were constructed and tested for replication in feline lymphoid cells. Orf-A mutant proviruses were also tested for viral gene and protein expression, viral particle formation, and virion infectivity. Deletions within orf-A severely restricted FIV replication in feline peripheral blood mononuclear cells (PBMC) and interleukin-2-dependent T-cell lines. In addition, substitutions of alanines for leucines in the putative leucine-rich domain, for cysteines in the putative cysteine-rich domain, and for a tryptophan at position 43 in Orf-A restricted the replication of FIV mutants. Deletions and point mutations in orf-A imposed a small effect or no effect on FIV long-terminal-repeat-driven viral gene expression and had no effect on viral protein expression. However, release of cell-free, virion-associated viral RNA in supernatants from cells transfected with orf-A mutant proviruses was severely restricted but was rescued by cotransfection with a wild-type Orf-A expression vector. In addition, virions derived from orf-A mutant proviruses expressed reduced infectivity for feline PBMC. Our findings suggest that Orf-A functions involve multiple steps of the FIV life cycle including both virion formation and infectivity. Furthermore, these observations suggest that Orf-A represents an FIV-encoded analog more similar to the accessory gene vpr, vpu, or nef than to the regulatory gene tat encoded by the primate lentiviruses.
Insights
The feline immunodeficiency virus orf-A gene is crucial for viral replication, affecting virion formation and infectivity. Mutations in orf-A significantly hinder feline immunodeficiency virus (FIV) spread and infectivity.
Area of Science:
- * Virology
- * Molecular Biology
- * Immunology
Background:
- * Feline immunodeficiency virus (FIV) orf-A (orf-2) encodes a small protein with domains similar to ungulate lentiviral Tat.
- * Orf-A is essential for efficient FIV replication in vitro and in vivo.
Purpose of the Study:
- * To investigate the role of FIV orf-A in viral replication, gene expression, virion formation, and infectivity.
- * To characterize the function of orf-A by analyzing replication-deficient FIV mutants.
Main Methods:
- * Construction and replication testing of FIV proviruses with in-frame deletions and point mutations in orf-A.
- * Assessment of viral gene/protein expression, viral particle formation, and virion infectivity in feline lymphoid cells and peripheral blood mononuclear cells (PBMC).
Main Results:
- * Deletions and specific point mutations in orf-A severely restricted FIV replication in feline PBMC and T-cell lines.
- * Orf-A mutations had minimal impact on viral gene and protein expression but severely restricted viral RNA release and virion infectivity.
- * Cotransfection with wild-type orf-A rescued viral RNA release.
Conclusions:
- * FIV orf-A plays a critical role in multiple stages of the FIV life cycle, including virion formation and infectivity.
- * Orf-A functions as an accessory gene, analogous to primate lentiviral vpr, vpu, or nef, rather than the regulatory gene tat.

