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Identification of postentry restrictions to Mason-Pfizer monkey virus infection in New World monkey cells
William E Diehl1, Elizabeth Stansell, Shari M Kaiser
1Emory Vaccine Center, Yerkes National Primate Research Center, Emory University, Atlanta, Georgia 30329, USA.
Abstract:
TRIM5alpha has been shown to be a major postentry determinant of the host range for gammaretroviruses and lentiviruses and, more recently, spumaviruses. However, the restrictive potential of TRIM5alpha against other retroviruses has been largely unexplored. We sought to determine whether or not Mason-Pfizer monkey virus (M-PMV), a prototype betaretrovirus isolated from rhesus macaques, was sensitive to restriction by TRIM5alpha. Cell lines from both Old World and New World primate species were screened for their susceptibility to infection by vesicular stomatitis virus G protein pseudotyped M-PMV. All of the cell lines tested that were established from Old World primates were found to be susceptible to M-PMV infection. However, fibroblasts established from three New World monkey species specifically resisted infection by this virus. Exogenously expressing TRIM5alpha from either tamarin or squirrel monkeys in permissive cell lines resulted in a block to M-PMV infection. Restriction in the resistant cell line of spider monkey origin was determined to occur at a postentry stage. However, spider monkey TRIM5alpha expression in permissive cells failed to restrict M-PMV infection, and interference with endogenous TRIM5alpha in the spider monkey fibroblasts failed to relieve the block to infectivity. Our results demonstrate that TRIM5alpha specificity extends to betaretroviruses and suggest that New World monkeys have evolved additional mechanisms to restrict the infection of at least one primate betaretrovirus.
Insights
Tripartite motif-containing protein 5-alpha (TRIM5alpha) restricts betaretroviruses, including Mason-Pfizer monkey virus (M-PMV). New World monkeys show TRIM5alpha-independent resistance to M-PMV, indicating additional antiviral mechanisms.
Area of Science:
- Virology
- Immunology
- Primate Genetics
Background:
- Tripartite motif-containing protein 5-alpha (TRIM5alpha) is a known antiviral factor that restricts certain retroviruses.
- Its role in restricting betaretroviruses, such as Mason-Pfizer monkey virus (M-PMV), remains largely uncharacterized.
Purpose of the Study:
- To investigate the susceptibility of primate cell lines to M-PMV infection.
- To determine if TRIM5alpha restricts M-PMV and to explore potential TRIM5alpha-independent restriction mechanisms in New World monkeys.
Main Methods:
- Screening of Old World and New World primate cell lines for M-PMV infection susceptibility.
- Assessing M-PMV restriction by expressing Old World primate TRIM5alpha in permissive cells.
- Investigating the role of endogenous TRIM5alpha in resistant New World monkey cell lines.
Main Results:
- Old World primate cell lines were susceptible to M-PMV, while New World primate cell lines showed resistance.
- Expression of TRIM5alpha from tamarin or squirrel monkeys restricted M-PMV infection in permissive cells.
- Spider monkey TRIM5alpha did not restrict M-PMV, and blocking endogenous TRIM5alpha did not restore infectivity in resistant spider monkey cells.
Conclusions:
- TRIM5alpha specificity extends to betaretroviruses, restricting M-PMV in certain primate species.
- New World monkeys possess TRIM5alpha-independent mechanisms that restrict M-PMV infection.
- These findings highlight the diverse evolutionary strategies of primate antiviral defenses against retroviruses.