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Published on: August 19, 2021
Cell Surface THY-1 Contributes to Human Cytomegalovirus Entry via a Macropinocytosis-Like Process
Qingxue Li1, Elizabeth Fischer2, Jeffrey I Cohen3
1Medical Virology Section, Laboratory of Infectious Diseases, National Institutes of Health, Bethesda, Maryland, USA.
Insights
Human cytomegalovirus (HCMV) uses the THY-1 protein to enter specific cells via macropinocytosis. This discovery clarifies HCMV cell entry mechanisms and aids in developing new antiviral strategies.
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- Human cytomegalovirus (HCMV) is a significant pathogen, particularly in immunocompromised individuals and as a cause of congenital defects.
- The precise mechanisms of HCMV cellular entry remain incompletely understood and are a subject of ongoing research.
- Previous work identified THY-1 as crucial for early HCMV infection stages and phosphatidylinositol 3-kinase (PI3K)/Akt activation during viral entry.
Purpose of the Study:
- To investigate the role of THY-1 in HCMV entry via macropinocytosis, a clathrin-independent endocytic pathway.
- To elucidate the specific cellular processes and molecular interactions involved in THY-1-mediated HCMV cellular uptake.
- To explore potential therapeutic targets by understanding HCMV entry mechanisms.
Main Methods:
- Electron microscopy was employed to visualize HCMV entry in THY-1-dependent cell lines.
- Inhibition assays using 5-(N-Ethyl-N-isopropyl)amiloride (EIPA) and soluble THY-1 were performed to assess their impact on HCMV infection.
- Macropinocytosis markers, such as extracellular fluid uptake, were measured.
- Confocal microscopy was used to determine the colocalization of HCMV virions and THY-1 with endocytic markers.
- Involvement of key macropinocytosis signaling pathways (actin, Na+/H+ exchange, PI3K, Pak1) was assessed by blocking their activity.
Main Results:
- HCMV was observed to enter THY-1-dependent cells through a macropinocytosis-like process.
- THY-1 was found to associate with HCMV virions on the cell surface and within macropinosomes.
- EIPA and soluble THY-1 significantly inhibited HCMV infection and associated fluid uptake.
- HCMV entry induced increased fluid uptake, indicative of macropinocytosis, which was blocked by EIPA and soluble THY-1.
- Inhibition of macropinocytosis-related pathways (actin, Na+/H+ exchange, PI3K, Pak1) impaired HCMV infection.
- HCMV virions and THY-1 did not colocalize with transferrin, ruling out clathrin-mediated endocytosis.
Conclusions:
- HCMV utilizes the THY-1 protein to facilitate entry into specific cell types via a macropinocytosis-like mechanism.
- This pathway is distinct from clathrin-mediated endocytosis.
- Understanding this THY-1-dependent macropinocytosis pathway offers insights into HCMV pathogenesis and potential avenues for therapeutic intervention.
Abstract:
Previously we showed that THY-1 has a critical role in the initial stage of infection of certain cell types with human cytomegalovirus (HCMV) and that THY-1 is important for HCMV-mediated activation of phosphatidylinositol 3-kinase (PI3K)/Akt during virus entry. THY-1 is known to interact with integrins and is a major cargo protein of clathrin-independent endocytic vesicles. Since macropinocytosis involves integrin signaling, is PI3K/Akt dependent, and is a clathrin-independent endocytic process, we determined whether THY-1 has a role in HCMV entry by macropinocytosis. Using electron microscopy in two cell lines that support HCMV infection in a THY-1-dependent manner, we found that HCMV enters these cells by a macropinocytosis-like process. THY-1 associated with HCMV virions on the cell surface and colocalized with virus inside macropinosomes. 5-(N-Ethyl-N-isopropyl)amiloride (EIPA) and soluble THY-1 blocked HCMV infection in the cell lines by ≥80% and 60%, respectively. HCMV entry into the cells triggered increased influx of extracellular fluid, a marker of macropinocytosis, and this increased fluid uptake was inhibited by EIPA and by soluble THY-1. Blocking actin depolymerization, Na+/H+ exchange, PI3K, and Pak1 kinase, which are critical for macropinocytosis, impaired HCMV infection. Neither internalized HCMV virions nor THY-1 in virus-infected cells colocalized with transferrin as determined by confocal microscopy, indicating that clathrin-mediated endocytosis was not involved in THY-1-associated virus entry. These results suggest that HCMV has adapted to utilize THY-1, a cargo protein of clathrin-independent endocytotic vesicles, to facilitate efficient entry into certain cell types by a macropinocytosis-like process.
Importance:
Human cytomegalovirus (HCMV) infects over half of the population and is the most common infectious cause of birth defects. The virus is the most important infection occurring in transplant recipients. The mechanism of how HCMV enters cells is controversial. In this study, we show that THY-1, a cell surface protein that is critical for the early stage of entry of HCMV into certain cell types, contributes to virus entry by macropinocytosis. Our findings suggest that HCMV has adapted to utilize THY-1 to facilitate entry of HCMV into macropinosomes in certain cell types. Further knowledge about the mechanism of HCMV entry into cells may facilitate the development of novel inhibitors of virus infection.
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