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Induction of fas ligand expression by an acutely lethal simian immunodeficiency virus, SIVsmmPBj14
S Hodge1, F J Novembre, L Whetter
1Department of Microbiology and Immunology, University of Rochester Medical Center, Rochester, New York, 14642, USA.
Abstract:
Simian immunodeficiency virus strain PBj14, SIVsmmPBj14, is unique among primate lentiviruses in its ability to trigger the proliferation of resting simian lymphocytes and to cause the rapid death of experimentally inoculated pigtailed macaques. Severe enteropathy, immune activation, and extensive apoptosis, particularly within gut-associated lymphoid tissue, characterize the acute disease syndrome associated with SIVsmmPBj14 infection. In the present study, we examined whether the ability of this virus to cause widespread apoptosis might be linked to the up-regulation of Fas ligand (CD95L) expression in virally infected cells. In vitro studies revealed that expression of the viral Nef protein, in the absence of any other viral gene product, was sufficient to up-regulate the transcriptional activity of the CD95L promoter and to cause cell surface expression of Fas ligand. This up-regulation was NFAT dependent (inhibited by cyclosporin A) and did not occur in cells that expressed a mutated derivative of the viral Nef protein, lacking a previously defined immunoreceptor tyrosine-based activation motif. These findings were corroborated by analysis of tissue sections from virally infected macaques. Immunohistochemical staining revealed that Fas ligand expression was efficiently up-regulated in the GALT of animals that had been experimentally infected with wild-type SIVsmmPBj14 but not in animals that were infected with a nonacutely pathogenic viral mutant lacking the Nef ITAM. Taken together, these results suggest that the ability of SIVsmmPBj14 to cause acutely lethal disease and to up-regulate FasL expression may be linked. Additional studies will be required to determine whether the induction of FasL expression is in itself important for acute disease pathogenesis.
Insights
Simian immunodeficiency virus strain PBj14 (SIVsmmPBj14) causes lethal disease in macaques by up-regulating Fas ligand (CD95L) expression, primarily through its Nef protein. This FasL up-regulation is linked to severe apoptosis and acute pathogenesis.
Area of Science:
- Virology
- Immunology
- Pathogenesis
Background:
- Simian immunodeficiency virus strain PBj14 (SIVsmmPBj14) is a unique primate lentivirus causing rapid death in macaques.
- Disease progression involves severe enteropathy, immune activation, and extensive apoptosis, particularly in gut-associated lymphoid tissue (GALT).
Purpose of the Study:
- To investigate the link between SIVsmmPBj14-induced apoptosis and the up-regulation of Fas ligand (CD95L) expression in infected cells.
- To determine the role of the viral Nef protein in FasL up-regulation.
Main Methods:
- In vitro studies using viral gene expression and promoter activity assays.
- Inhibition studies using cyclosporin A to assess NFAT dependency.
- Analysis of mutated Nef proteins lacking specific motifs.
- In vivo immunohistochemical staining of tissue sections from infected macaques.
Main Results:
- The viral Nef protein alone was sufficient to up-regulate CD95L promoter activity and cell surface FasL expression.
- FasL up-regulation was dependent on the NFAT pathway and required an intact immunoreceptor tyrosine-based activation motif (ITAM) in the Nef protein.
- Immunohistochemistry confirmed FasL up-regulation in the GALT of macaques infected with wild-type SIVsmmPBj14, but not with a Nef ITAM-mutant virus.
Conclusions:
- SIVsmmPBj14's ability to cause lethal disease and up-regulate FasL expression appears linked.
- The viral Nef protein plays a critical role in inducing FasL expression.
- Further research is needed to confirm if FasL induction is a key mechanism in acute disease pathogenesis.