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Published on: May 24, 2020
Cowpox virus protein CPXV012 eludes CTLs by blocking ATP binding to TAP
Rutger D Luteijn1, Hanneke Hoelen1, Elisabeth Kruse1
1Department of Medical Microbiology, University Medical Center Utrecht, 3584 CX Utrecht, the Netherlands;
Abstract:
CD8(+) CTLs detect virus-infected cells through recognition of virus-derived peptides presented at the cell surface by MHC class I molecules. The cowpox virus protein CPXV012 deprives the endoplasmic reticulum (ER) lumen of peptides for loading onto newly synthesized MHC class I molecules by inhibiting the transporter associated with Ag processing (TAP). This evasion strategy allows the virus to avoid detection by the immune system. In this article, we show that CPXV012, a 9-kDa type II transmembrane protein, prevents peptide transport by inhibiting ATP binding to TAP. We identified a segment within the ER-luminal domain of CPXV012 that imposes the block in peptide transport by TAP. Biophysical studies show that this domain has a strong affinity for phospholipids that are also abundant in the ER membrane. We discuss these findings in an evolutionary context and show that a frameshift deletion in the CPXV012 gene in an ancestral cowpox virus created the current form of CPXV012 that is capable of inhibiting TAP. In conclusion, our findings indicate that the ER-luminal domain of CPXV012 inserts into the ER membrane, where it interacts with TAP. CPXV012 presumably induces a conformational arrest that precludes ATP binding to TAP and, thus, activity of TAP, thereby preventing the presentation of viral peptides to CTLs.
Insights
Cowpox virus protein CPXV012 blocks the transporter associated with antigen processing (TAP) by inhibiting ATP binding. This prevents viral peptide presentation to CD8(+) CTLs, aiding viral immune evasion.
Area of Science:
- Virology
- Immunology
- Structural Biology
Background:
- CD8(+) cytotoxic T lymphocytes (CTLs) recognize viral peptides presented by MHC class I molecules.
- Cowpox virus uses the protein CPXV012 to evade immune detection by interfering with antigen processing.
Purpose of the Study:
- To elucidate the mechanism by which CPXV012 inhibits the transporter associated with antigen processing (TAP).
- To identify the functional domain of CPXV012 responsible for TAP inhibition.
Main Methods:
- Biophysical studies to analyze protein-ligand interactions.
- Investigation of the interaction between CPXV012 and TAP.
- Analysis of the evolutionary history of the CPXV012 gene.
Main Results:
- CPXV012, a type II transmembrane protein, inhibits TAP by preventing ATP binding.
- A specific ER-luminal domain of CPXV012 is responsible for blocking peptide transport.
- This domain exhibits high affinity for ER membrane phospholipids.
- Evolutionary analysis revealed a frameshift mutation creating the inhibitory CPXV012.
Conclusions:
- CPXV012's ER-luminal domain inserts into the ER membrane and interacts with TAP.
- CPXV012 induces a conformational change in TAP, inhibiting its activity and ATP binding.
- This mechanism effectively prevents viral peptide presentation to CTLs, facilitating immune evasion.
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