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.

Journal of Virology
|August 26, 2016
PubMed

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.

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