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Published on: September 15, 2010
The contribution of RING and B-box 2 domains to retroviral restriction mediated by monkey TRIM5alpha
Hassan Javanbakht1, Felipe Diaz-Griffero, Matthew Stremlau
1Department of Cancer Immunology and AIDS, Dana-Farber Cancer Institute, Boston, MA 02115, USA.
Abstract:
TRIM5alpha is a cytoplasmic protein that mediates a post-entry block to infection by some retroviruses. TRIM5alpha contains a tripartite motif (TRIM), which includes RING, B-box 2, and coiled-coil domains, and a C-terminal B30.2 (SPRY) domain. We investigated the contribution of the RING and B-box 2 domains to the antiretroviral activity of rhesus monkey TRIM5alpha (TRIM5alpharh), which potently restricts infection by human immunodeficiency virus, type 1 (HIV-1) and simian immunodeficiency virus of African green monkeys (SIVagm). Disruption of the RING domain caused mislocalization of TRIM5alpharh so that the cytoplasmic level of the protein was decreased compared with that of the wild-type protein. Nonetheless, partial ability to restrict HIV-1 and SIVagm was retained by the RING domain mutants. By contrast, although TRIM5alpharh mutants with disrupted B-box 2 domains were efficiently expressed and correctly localized to the cytoplasm, antiretroviral activity was absent. The B-box 2 mutants colocalized and associated with wild-type TRIM5alpharh and exerted dominant-negative effects on the antiretroviral activity of the wild-type protein. Taken together with other data, these results indicate that functionally defective TRIM5alpharh molecules that retain a coiled coil can act as dominant-negative inhibitors of wild-type TRIM5alpharh function. The RING domain of TRIM5alpharh is not absolutely required for retrovirus restriction but can influence cytoplasmic levels of the protein and thus indirectly alter function. The B-box 2 domain, by contrast, appears to be essential for efficient retrovirus restriction.
Insights
The B-box 2 domain is essential for TRIM5alpha
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- TRIM5alpha is a protein that blocks retroviral infection after entry.
- It has several domains, including RING, B-box 2, and B30.2 (SPRY).
- Rhesus monkey TRIM5alpha (TRIM5alpharh) restricts HIV-1 and SIVagm.
Purpose of the Study:
- To investigate the roles of the RING and B-box 2 domains in TRIM5alpharh's antiretroviral activity.
- To understand how these domains affect protein localization and function.
Main Methods:
- Mutagenesis of the RING and B-box 2 domains of TRIM5alpharh.
- Analysis of protein expression, localization, and antiretroviral activity against HIV-1 and SIVagm.
- Assessment of dominant-negative effects of mutant TRIM5alpharh on wild-type function.
Main Results:
- Disrupting the RING domain led to mislocalization and reduced cytoplasmic levels, but partial restriction activity remained.
- Mutating the B-box 2 domain abolished antiretroviral activity, despite proper expression and localization.
- B-box 2 mutants showed dominant-negative effects on wild-type TRIM5alpharh function.
Conclusions:
- The B-box 2 domain is crucial for TRIM5alpharh's retroviral restriction function.
- The RING domain influences protein levels but is not essential for restriction.
- Defective TRIM5alpharh with intact coiled-coil domains can inhibit wild-type TRIM5alpharh.
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