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Infectious cell entry mechanism of influenza virus

Journal of Virology
|July 1, 1982
PubMed

Insights

Influenza virus enters cells via endocytosis and fuses within lysosomes at low pH. Chloroquine blocks replication by increasing lysosomal pH, trapping virus particles.

Area of Science:

  • Virology
  • Cell Biology
  • Biochemistry

Background:

  • Influenza virus infection mechanism involves cell entry and replication.
  • Understanding virus-cell interactions is crucial for developing antiviral strategies.

Purpose of the Study:

  • To elucidate the mechanism of influenza virus (WSN strain) entry into MDCK cells.
  • To investigate the role of pH in virus binding, endocytosis, and envelope fusion.
  • To determine the effect of chloroquine on influenza virus replication and its underlying mechanism.

Main Methods:

  • Spin-labeled phospholipids and electron microscopy were used to study virus-cell interactions.
  • pH-dependent fusion assays were performed.
  • Virus binding and endocytosis kinetics were measured.
  • The effect of chloroquine on virus replication and intracellular trafficking was analyzed.

Main Results:

  • Influenza virus envelope fusion is pH-dependent, occurring optimally around pH 5.0.
  • Virus binding is pH-independent, while endocytosis occurs at neutral pH.
  • Chloroquine inhibits virus replication by increasing lysosomal pH, trapping virus particles in vacuoles.
  • Chloroquine does not affect virus binding, endocytosis, or fusion at acidic pH.

Conclusions:

  • Influenza virus enters cells through endocytosis, with fusion occurring in acidic secondary lysosomes.
  • The low pH within lysosomes is essential for viral genome release into the cytoplasm.
  • Chloroquine effectively inhibits influenza virus replication by disrupting the acidic environment required for fusion.

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