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Published on: October 28, 2016
Further Characterization of the Antiviral Transmembrane Protein MARCH8
Takuya Tada1,2, Yanzhao Zhang1,3,4, Dechuan Kong1,5
1Department of Pathology, National Institute of Infectious Diseases, Tokyo 162-8640, Japan.
Abstract:
The cellular transmembrane protein MARCH8 impedes the incorporation of various viral envelope glycoproteins, such as the HIV-1 envelope glycoprotein (Env) and vesicular stomatitis virus G-glycoprotein (VSV-G), into virions by downregulating them from the surface of virus-producing cells. This downregulation significantly reduces the efficiency of virus infection. In this study, we aimed to further characterize this host protein by investigating its species specificity and the domains responsible for its antiviral activity, as well as its ability to inhibit cell-to-cell HIV-1 infection. We found that the antiviral function of MARCH8 is well conserved in the rhesus macaque, mouse, and bovine versions. The RING-CH domains of these versions are functionally important for inhibiting HIV-1 Env and VSV-G-pseudovirus infection, whereas tyrosine motifs are crucial for the former only, consistent with findings in human MARCH8. Through analysis of chimeric proteins between MARCH8 and non-antiviral MARCH3, we determined that both the N-terminal and C-terminal cytoplasmic tails, as well as presumably the N-terminal transmembrane domain, of MARCH8 are critical for its antiviral activity. Notably, we found that MARCH8 is unable to block cell-to-cell HIV-1 infection, likely due to its insufficient downregulation of Env. These findings offer further insights into understanding the biology of this antiviral transmembrane protein.
Insights
The transmembrane protein MARCH8 inhibits viral infection by reducing viral glycoproteins on cell surfaces. Its antiviral function is conserved across species, with specific domains crucial for activity, though it cannot block cell-to-cell transmission.
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- MARCH8 is a cellular transmembrane protein known to downregulate viral envelope glycoproteins.
- This downregulation by MARCH8 reduces the efficiency of viral infection by limiting glycoprotein incorporation into virions.
Purpose of the Study:
- To characterize the species specificity of MARCH8's antiviral activity.
- To identify the specific domains within MARCH8 responsible for its antiviral function.
- To assess MARCH8's efficacy in inhibiting cell-to-cell HIV-1 infection.
Main Methods:
- Investigated species specificity of MARCH8 using rhesus macaque, mouse, and bovine versions.
- Analyzed functional importance of RING-CH domains and tyrosine motifs.
- Constructed chimeric proteins between MARCH8 and MARCH3 to map critical domains.
- Assessed inhibition of HIV-1 Env and VSV-G pseudovirus infection.
- Evaluated inhibition of cell-to-cell HIV-1 infection.
Main Results:
- The antiviral function of MARCH8 is conserved across rhesus macaque, mouse, and bovine species.
- RING-CH domains are essential for inhibiting HIV-1 Env and VSV-G pseudovirus infection.
- Tyrosine motifs are critical for inhibiting HIV-1 Env but not VSV-G.
- Both N-terminal and C-terminal cytoplasmic tails, and the N-terminal transmembrane domain, are crucial for antiviral activity.
- MARCH8 does not inhibit cell-to-cell HIV-1 infection due to insufficient Env downregulation.
Conclusions:
- MARCH8 exhibits conserved antiviral properties across multiple species.
- Specific domains, including RING-CH and cytoplasmic tails, are critical for MARCH8's antiviral mechanism.
- MARCH8's inability to block cell-to-cell spread highlights limitations in its broad antiviral capacity against HIV-1.
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