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Engineering Antiviral Agents via Surface Plasmon Resonance
Published on: June 14, 2022
MARCH8 Targets Cytoplasmic Lysine Residues of Various Viral Envelope Glycoproteins
Yanzhao Zhang1, Seiya Ozono1,2, Takuya Tada1,3
1Department of Pathology, National Institute of Infectious Diseases, Tokyo, Japan.
Abstract:
The host transmembrane protein MARCH8 is a RING finger E3 ubiquitin ligase that downregulates various host transmembrane proteins, such as MHC-II. We have recently reported that MARCH8 expression in virus-producing cells impairs viral infectivity by reducing virion incorporation of not only HIV-1 envelope glycoprotein but also vesicular stomatitis virus G-glycoprotein through two different pathways. However, the MARCH8 inhibition spectrum remains largely unknown. Here, we show the antiviral spectrum of MARCH8 using viruses pseudotyped with a variety of viral envelope glycoproteins. Infection experiments revealed that viral envelope glycoproteins derived from the rhabdovirus, arenavirus, coronavirus, and togavirus (alphavirus) families were sensitive to MARCH8-mediated inhibition. Lysine mutations at the cytoplasmic tails of rabies virus-G, lymphocytic choriomeningitis virus glycoproteins, SARS-CoV and SARS-CoV-2 spike proteins, and Chikungunya virus and Ross River virus E2 proteins conferred resistance to MARCH8. Immunofluorescence showed impaired downregulation of the mutants of these viral envelope glycoproteins by MARCH8, followed by lysosomal degradation, suggesting that MARCH8-mediated ubiquitination leads to intracellular degradation of these envelopes. Indeed, rabies virus-G and Chikungunya virus E2 proteins proved to be clearly ubiquitinated. We conclude that MARCH8 has inhibitory activity on a variety of viral envelope glycoproteins whose cytoplasmic lysine residues are targeted by this antiviral factor. IMPORTANCE A member of the MARCH E3 ubiquitin ligase family, MARCH8, downregulates many different kinds of host transmembrane proteins, resulting in the regulation of cellular homeostasis. On the other hands, MARCH8 acts as an antiviral factor when it binds to and downregulates HIV-1 envelope glycoprotein and vesicular stomatitis virus G-glycoprotein that are viral transmembrane proteins. This study reveals that, as in the case of cellular membrane proteins, MARCH8 shows broad-spectrum inhibition against various viral envelope glycoproteins by recognizing their cytoplasmic lysine residues, resulting in lysosomal degradation.
Insights
The E3 ubiquitin ligase MARCH8 broadly inhibits viral infectivity by targeting viral envelope glycoproteins. It mediates ubiquitination and lysosomal degradation of these viral proteins, showing broad-spectrum antiviral activity.
Area of Science:
- Virology
- Cell Biology
- Biochemistry
Background:
- MARCH8 is a host E3 ubiquitin ligase that downregulates host transmembrane proteins.
- MARCH8 has been shown to impair viral infectivity by reducing virion incorporation of HIV-1 and VSV envelope glycoproteins.
- The full spectrum of MARCH8's antiviral activity is not well understood.
Purpose of the Study:
- To investigate the antiviral spectrum of the host E3 ubiquitin ligase MARCH8.
- To identify viral envelope glycoproteins sensitive to MARCH8-mediated inhibition.
- To elucidate the mechanism of MARCH8's antiviral activity against a broad range of viruses.
Main Methods:
- Used pseudotyped viruses with diverse viral envelope glycoproteins to test MARCH8 inhibition.
- Introduced lysine mutations in cytoplasmic tails of viral glycoproteins to assess resistance.
- Employed immunofluorescence and ubiquitination assays to analyze MARCH8's mechanism of action.
Main Results:
- MARCH8 inhibited viral envelope glycoproteins from rhabdovirus, arenavirus, coronavirus, and togavirus families.
- Lysine mutations in cytoplasmic tails conferred resistance to MARCH8-mediated inhibition.
- MARCH8-mediated ubiquitination led to lysosomal degradation of viral envelope glycoproteins.
Conclusions:
- MARCH8 exhibits broad-spectrum antiviral activity against various viral envelope glycoproteins.
- The cytoplasmic lysine residues of viral envelope glycoproteins are key targets for MARCH8.
- MARCH8-induced ubiquitination and subsequent degradation of viral envelopes are crucial for its antiviral mechanism.
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